Coverage Report

Created: 2025-11-11 06:44

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/cpython/Objects/abstract.c
Line
Count
Source
1
/* Abstract Object Interface (many thanks to Jim Fulton) */
2
3
#include "Python.h"
4
#include "pycore_abstract.h"      // _PyIndex_Check()
5
#include "pycore_call.h"          // _PyObject_CallNoArgs()
6
#include "pycore_ceval.h"         // _Py_EnterRecursiveCallTstate()
7
#include "pycore_crossinterp.h"   // _Py_CallInInterpreter()
8
#include "pycore_genobject.h"     // _PyGen_FetchStopIterationValue()
9
#include "pycore_list.h"          // _PyList_AppendTakeRef()
10
#include "pycore_long.h"          // _PyLong_IsNegative()
11
#include "pycore_object.h"        // _Py_CheckSlotResult()
12
#include "pycore_pybuffer.h"      // _PyBuffer_ReleaseInInterpreterAndRawFree()
13
#include "pycore_pyerrors.h"      // _PyErr_Occurred()
14
#include "pycore_pystate.h"       // _PyThreadState_GET()
15
#include "pycore_tuple.h"         // _PyTuple_FromArraySteal()
16
#include "pycore_unionobject.h"   // _PyUnion_Check()
17
18
#include <stddef.h>               // offsetof()
19
20
21
/* Shorthands to return certain errors */
22
23
static PyObject *
24
type_error(const char *msg, PyObject *obj)
25
0
{
26
0
    PyErr_Format(PyExc_TypeError, msg, Py_TYPE(obj)->tp_name);
27
0
    return NULL;
28
0
}
29
30
static PyObject *
31
null_error(void)
32
0
{
33
0
    PyThreadState *tstate = _PyThreadState_GET();
34
0
    if (!_PyErr_Occurred(tstate)) {
35
0
        _PyErr_SetString(tstate, PyExc_SystemError,
36
0
                         "null argument to internal routine");
37
0
    }
38
0
    return NULL;
39
0
}
40
41
/* Operations on any object */
42
43
PyObject *
44
PyObject_Type(PyObject *o)
45
114
{
46
114
    PyObject *v;
47
48
114
    if (o == NULL) {
49
0
        return null_error();
50
0
    }
51
52
114
    v = (PyObject *)Py_TYPE(o);
53
114
    return Py_NewRef(v);
54
114
}
55
56
Py_ssize_t
57
PyObject_Size(PyObject *o)
58
89.9M
{
59
89.9M
    if (o == NULL) {
60
0
        null_error();
61
0
        return -1;
62
0
    }
63
64
89.9M
    PySequenceMethods *m = Py_TYPE(o)->tp_as_sequence;
65
89.9M
    if (m && m->sq_length) {
66
89.9M
        Py_ssize_t len = m->sq_length(o);
67
89.9M
        assert(_Py_CheckSlotResult(o, "__len__", len >= 0));
68
89.9M
        return len;
69
89.9M
    }
70
71
532
    return PyMapping_Size(o);
72
89.9M
}
73
74
#undef PyObject_Length
75
Py_ssize_t
76
PyObject_Length(PyObject *o)
77
0
{
78
0
    return PyObject_Size(o);
79
0
}
80
349k
#define PyObject_Length PyObject_Size
81
82
int
83
6.14M
_PyObject_HasLen(PyObject *o) {
84
6.14M
    return (Py_TYPE(o)->tp_as_sequence && Py_TYPE(o)->tp_as_sequence->sq_length) ||
85
5.79M
        (Py_TYPE(o)->tp_as_mapping && Py_TYPE(o)->tp_as_mapping->mp_length);
86
6.14M
}
87
88
/* The length hint function returns a non-negative value from o.__len__()
89
   or o.__length_hint__(). If those methods aren't found the defaultvalue is
90
   returned.  If one of the calls fails with an exception other than TypeError
91
   this function returns -1.
92
*/
93
94
Py_ssize_t
95
PyObject_LengthHint(PyObject *o, Py_ssize_t defaultvalue)
96
6.14M
{
97
6.14M
    PyObject *hint, *result;
98
6.14M
    Py_ssize_t res;
99
6.14M
    if (_PyObject_HasLen(o)) {
100
349k
        res = PyObject_Length(o);
101
349k
        if (res < 0) {
102
0
            PyThreadState *tstate = _PyThreadState_GET();
103
0
            assert(_PyErr_Occurred(tstate));
104
0
            if (!_PyErr_ExceptionMatches(tstate, PyExc_TypeError)) {
105
0
                return -1;
106
0
            }
107
0
            _PyErr_Clear(tstate);
108
0
        }
109
349k
        else {
110
349k
            return res;
111
349k
        }
112
349k
    }
113
5.79M
    hint = _PyObject_LookupSpecial(o, &_Py_ID(__length_hint__));
114
5.79M
    if (hint == NULL) {
115
4.18M
        if (PyErr_Occurred()) {
116
0
            return -1;
117
0
        }
118
4.18M
        return defaultvalue;
119
4.18M
    }
120
1.60M
    result = _PyObject_CallNoArgs(hint);
121
1.60M
    Py_DECREF(hint);
122
1.60M
    if (result == NULL) {
123
0
        PyThreadState *tstate = _PyThreadState_GET();
124
0
        if (_PyErr_ExceptionMatches(tstate, PyExc_TypeError)) {
125
0
            _PyErr_Clear(tstate);
126
0
            return defaultvalue;
127
0
        }
128
0
        return -1;
129
0
    }
130
1.60M
    else if (result == Py_NotImplemented) {
131
0
        Py_DECREF(result);
132
0
        return defaultvalue;
133
0
    }
134
1.60M
    if (!PyLong_Check(result)) {
135
0
        PyErr_Format(PyExc_TypeError,
136
0
                     "%T.__length_hint__() must return an int, not %T",
137
0
                     o, result);
138
0
        Py_DECREF(result);
139
0
        return -1;
140
0
    }
141
1.60M
    res = PyLong_AsSsize_t(result);
142
1.60M
    Py_DECREF(result);
143
1.60M
    if (res < 0 && PyErr_Occurred()) {
144
0
        return -1;
145
0
    }
146
1.60M
    if (res < 0) {
147
0
        PyErr_Format(PyExc_ValueError,
148
0
                     "%T.__length_hint__() must return a non-negative int", o);
149
0
        return -1;
150
0
    }
151
1.60M
    return res;
152
1.60M
}
153
154
PyObject *
155
PyObject_GetItem(PyObject *o, PyObject *key)
156
141M
{
157
141M
    if (o == NULL || key == NULL) {
158
0
        return null_error();
159
0
    }
160
161
141M
    PyMappingMethods *m = Py_TYPE(o)->tp_as_mapping;
162
141M
    if (m && m->mp_subscript) {
163
141M
        PyObject *item = m->mp_subscript(o, key);
164
141M
        assert(_Py_CheckSlotResult(o, "__getitem__", item != NULL));
165
141M
        return item;
166
141M
    }
167
168
86
    PySequenceMethods *ms = Py_TYPE(o)->tp_as_sequence;
169
86
    if (ms && ms->sq_item) {
170
0
        if (_PyIndex_Check(key)) {
171
0
            Py_ssize_t key_value;
172
0
            key_value = PyNumber_AsSsize_t(key, PyExc_IndexError);
173
0
            if (key_value == -1 && PyErr_Occurred())
174
0
                return NULL;
175
0
            return PySequence_GetItem(o, key_value);
176
0
        }
177
0
        else {
178
0
            return type_error("sequence index must "
179
0
                              "be integer, not '%.200s'", key);
180
0
        }
181
0
    }
182
183
86
    if (PyType_Check(o)) {
184
86
        PyObject *meth, *result;
185
186
        // Special case type[int], but disallow other types so str[int] fails
187
86
        if ((PyTypeObject*)o == &PyType_Type) {
188
0
            return Py_GenericAlias(o, key);
189
0
        }
190
191
86
        if (PyObject_GetOptionalAttr(o, &_Py_ID(__class_getitem__), &meth) < 0) {
192
0
            return NULL;
193
0
        }
194
86
        if (meth && meth != Py_None) {
195
86
            result = PyObject_CallOneArg(meth, key);
196
86
            Py_DECREF(meth);
197
86
            return result;
198
86
        }
199
0
        Py_XDECREF(meth);
200
0
        PyErr_Format(PyExc_TypeError, "type '%.200s' is not subscriptable",
201
0
                     ((PyTypeObject *)o)->tp_name);
202
0
        return NULL;
203
86
    }
204
205
0
    return type_error("'%.200s' object is not subscriptable", o);
206
86
}
207
208
int
209
PyMapping_GetOptionalItem(PyObject *obj, PyObject *key, PyObject **result)
210
922k
{
211
922k
    if (PyDict_CheckExact(obj)) {
212
922k
        return PyDict_GetItemRef(obj, key, result);
213
922k
    }
214
215
566
    *result = PyObject_GetItem(obj, key);
216
566
    if (*result) {
217
178
        return 1;
218
178
    }
219
566
    assert(PyErr_Occurred());
220
388
    if (!PyErr_ExceptionMatches(PyExc_KeyError)) {
221
0
        return -1;
222
0
    }
223
388
    PyErr_Clear();
224
388
    return 0;
225
388
}
226
227
int
228
PyObject_SetItem(PyObject *o, PyObject *key, PyObject *value)
229
243k
{
230
243k
    if (o == NULL || key == NULL || value == NULL) {
231
0
        null_error();
232
0
        return -1;
233
0
    }
234
235
243k
    PyMappingMethods *m = Py_TYPE(o)->tp_as_mapping;
236
243k
    if (m && m->mp_ass_subscript) {
237
243k
        int res = m->mp_ass_subscript(o, key, value);
238
243k
        assert(_Py_CheckSlotResult(o, "__setitem__", res >= 0));
239
243k
        return res;
240
243k
    }
241
242
0
    if (Py_TYPE(o)->tp_as_sequence) {
243
0
        if (_PyIndex_Check(key)) {
244
0
            Py_ssize_t key_value;
245
0
            key_value = PyNumber_AsSsize_t(key, PyExc_IndexError);
246
0
            if (key_value == -1 && PyErr_Occurred())
247
0
                return -1;
248
0
            return PySequence_SetItem(o, key_value, value);
249
0
        }
250
0
        else if (Py_TYPE(o)->tp_as_sequence->sq_ass_item) {
251
0
            type_error("sequence index must be "
252
0
                       "integer, not '%.200s'", key);
253
0
            return -1;
254
0
        }
255
0
    }
256
257
0
    type_error("'%.200s' object does not support item assignment", o);
258
0
    return -1;
259
0
}
260
261
int
262
PyObject_DelItem(PyObject *o, PyObject *key)
263
452k
{
264
452k
    if (o == NULL || key == NULL) {
265
0
        null_error();
266
0
        return -1;
267
0
    }
268
269
452k
    PyMappingMethods *m = Py_TYPE(o)->tp_as_mapping;
270
452k
    if (m && m->mp_ass_subscript) {
271
452k
        int res = m->mp_ass_subscript(o, key, (PyObject*)NULL);
272
452k
        assert(_Py_CheckSlotResult(o, "__delitem__", res >= 0));
273
452k
        return res;
274
452k
    }
275
276
0
    if (Py_TYPE(o)->tp_as_sequence) {
277
0
        if (_PyIndex_Check(key)) {
278
0
            Py_ssize_t key_value;
279
0
            key_value = PyNumber_AsSsize_t(key, PyExc_IndexError);
280
0
            if (key_value == -1 && PyErr_Occurred())
281
0
                return -1;
282
0
            return PySequence_DelItem(o, key_value);
283
0
        }
284
0
        else if (Py_TYPE(o)->tp_as_sequence->sq_ass_item) {
285
0
            type_error("sequence index must be "
286
0
                       "integer, not '%.200s'", key);
287
0
            return -1;
288
0
        }
289
0
    }
290
291
0
    type_error("'%.200s' object does not support item deletion", o);
292
0
    return -1;
293
0
}
294
295
int
296
PyObject_DelItemString(PyObject *o, const char *key)
297
0
{
298
0
    PyObject *okey;
299
0
    int ret;
300
301
0
    if (o == NULL || key == NULL) {
302
0
        null_error();
303
0
        return -1;
304
0
    }
305
0
    okey = PyUnicode_FromString(key);
306
0
    if (okey == NULL)
307
0
        return -1;
308
0
    ret = PyObject_DelItem(o, okey);
309
0
    Py_DECREF(okey);
310
0
    return ret;
311
0
}
312
313
314
/* Return 1 if the getbuffer function is available, otherwise return 0. */
315
int
316
PyObject_CheckBuffer(PyObject *obj)
317
11.9M
{
318
11.9M
    PyBufferProcs *tp_as_buffer = Py_TYPE(obj)->tp_as_buffer;
319
11.9M
    return (tp_as_buffer != NULL && tp_as_buffer->bf_getbuffer != NULL);
320
11.9M
}
321
322
// Old buffer protocols (deprecated, abi only)
323
324
/* Checks whether an arbitrary object supports the (character, single segment)
325
   buffer interface.
326
327
   Returns 1 on success, 0 on failure.
328
329
   We release the buffer right after use of this function which could
330
   cause issues later on.  Don't use these functions in new code.
331
 */
332
PyAPI_FUNC(int) /* abi_only */
333
PyObject_CheckReadBuffer(PyObject *obj)
334
0
{
335
0
    PyBufferProcs *pb = Py_TYPE(obj)->tp_as_buffer;
336
0
    Py_buffer view;
337
338
0
    if (pb == NULL ||
339
0
        pb->bf_getbuffer == NULL)
340
0
        return 0;
341
0
    if ((*pb->bf_getbuffer)(obj, &view, PyBUF_SIMPLE) == -1) {
342
0
        PyErr_Clear();
343
0
        return 0;
344
0
    }
345
0
    PyBuffer_Release(&view);
346
0
    return 1;
347
0
}
348
349
static int
350
as_read_buffer(PyObject *obj, const void **buffer, Py_ssize_t *buffer_len)
351
0
{
352
0
    Py_buffer view;
353
354
0
    if (obj == NULL || buffer == NULL || buffer_len == NULL) {
355
0
        null_error();
356
0
        return -1;
357
0
    }
358
0
    if (PyObject_GetBuffer(obj, &view, PyBUF_SIMPLE) != 0)
359
0
        return -1;
360
361
0
    *buffer = view.buf;
362
0
    *buffer_len = view.len;
363
0
    PyBuffer_Release(&view);
364
0
    return 0;
365
0
}
366
367
/* Takes an arbitrary object which must support the (character, single segment)
368
   buffer interface and returns a pointer to a read-only memory location
369
   usable as character based input for subsequent processing.
370
371
   Return 0 on success.  buffer and buffer_len are only set in case no error
372
   occurs. Otherwise, -1 is returned and an exception set. */
373
PyAPI_FUNC(int) /* abi_only */
374
PyObject_AsCharBuffer(PyObject *obj,
375
                      const char **buffer,
376
                      Py_ssize_t *buffer_len)
377
0
{
378
0
    return as_read_buffer(obj, (const void **)buffer, buffer_len);
379
0
}
380
381
/* Same as PyObject_AsCharBuffer() except that this API expects (readable,
382
   single segment) buffer interface and returns a pointer to a read-only memory
383
   location which can contain arbitrary data.
384
385
   0 is returned on success.  buffer and buffer_len are only set in case no
386
   error occurs.  Otherwise, -1 is returned and an exception set. */
387
PyAPI_FUNC(int) /* abi_only */
388
PyObject_AsReadBuffer(PyObject *obj,
389
                      const void **buffer,
390
                      Py_ssize_t *buffer_len)
391
0
{
392
0
    return as_read_buffer(obj, buffer, buffer_len);
393
0
}
394
395
/* Takes an arbitrary object which must support the (writable, single segment)
396
   buffer interface and returns a pointer to a writable memory location in
397
   buffer of size 'buffer_len'.
398
399
   Return 0 on success.  buffer and buffer_len are only set in case no error
400
   occurs. Otherwise, -1 is returned and an exception set. */
401
PyAPI_FUNC(int) /* abi_only */
402
PyObject_AsWriteBuffer(PyObject *obj,
403
                       void **buffer,
404
                       Py_ssize_t *buffer_len)
405
0
{
406
0
    PyBufferProcs *pb;
407
0
    Py_buffer view;
408
409
0
    if (obj == NULL || buffer == NULL || buffer_len == NULL) {
410
0
        null_error();
411
0
        return -1;
412
0
    }
413
0
    pb = Py_TYPE(obj)->tp_as_buffer;
414
0
    if (pb == NULL ||
415
0
        pb->bf_getbuffer == NULL ||
416
0
        ((*pb->bf_getbuffer)(obj, &view, PyBUF_WRITABLE) != 0)) {
417
0
        PyErr_SetString(PyExc_TypeError,
418
0
                        "expected a writable bytes-like object");
419
0
        return -1;
420
0
    }
421
422
0
    *buffer = view.buf;
423
0
    *buffer_len = view.len;
424
0
    PyBuffer_Release(&view);
425
0
    return 0;
426
0
}
427
428
/* Buffer C-API for Python 3.0 */
429
430
int
431
PyObject_GetBuffer(PyObject *obj, Py_buffer *view, int flags)
432
17.0M
{
433
17.0M
    if (flags != PyBUF_SIMPLE) {  /* fast path */
434
1.23M
        if (flags == PyBUF_READ || flags == PyBUF_WRITE) {
435
0
            PyErr_BadInternalCall();
436
0
            return -1;
437
0
        }
438
1.23M
    }
439
17.0M
    PyBufferProcs *pb = Py_TYPE(obj)->tp_as_buffer;
440
441
17.0M
    if (pb == NULL || pb->bf_getbuffer == NULL) {
442
0
        PyErr_Format(PyExc_TypeError,
443
0
                     "a bytes-like object is required, not '%.100s'",
444
0
                     Py_TYPE(obj)->tp_name);
445
0
        return -1;
446
0
    }
447
17.0M
    int res = (*pb->bf_getbuffer)(obj, view, flags);
448
17.0M
    assert(_Py_CheckSlotResult(obj, "getbuffer", res >= 0));
449
17.0M
    return res;
450
17.0M
}
451
452
static int
453
_IsFortranContiguous(const Py_buffer *view)
454
0
{
455
0
    Py_ssize_t sd, dim;
456
0
    int i;
457
458
    /* 1) len = product(shape) * itemsize
459
       2) itemsize > 0
460
       3) len = 0 <==> exists i: shape[i] = 0 */
461
0
    if (view->len == 0) return 1;
462
0
    if (view->strides == NULL) {  /* C-contiguous by definition */
463
        /* Trivially F-contiguous */
464
0
        if (view->ndim <= 1) return 1;
465
466
        /* ndim > 1 implies shape != NULL */
467
0
        assert(view->shape != NULL);
468
469
        /* Effectively 1-d */
470
0
        sd = 0;
471
0
        for (i=0; i<view->ndim; i++) {
472
0
            if (view->shape[i] > 1) sd += 1;
473
0
        }
474
0
        return sd <= 1;
475
0
    }
476
477
    /* strides != NULL implies both of these */
478
0
    assert(view->ndim > 0);
479
0
    assert(view->shape != NULL);
480
481
0
    sd = view->itemsize;
482
0
    for (i=0; i<view->ndim; i++) {
483
0
        dim = view->shape[i];
484
0
        if (dim > 1 && view->strides[i] != sd) {
485
0
            return 0;
486
0
        }
487
0
        sd *= dim;
488
0
    }
489
0
    return 1;
490
0
}
491
492
static int
493
_IsCContiguous(const Py_buffer *view)
494
1.23M
{
495
1.23M
    Py_ssize_t sd, dim;
496
1.23M
    int i;
497
498
    /* 1) len = product(shape) * itemsize
499
       2) itemsize > 0
500
       3) len = 0 <==> exists i: shape[i] = 0 */
501
1.23M
    if (view->len == 0) return 1;
502
1.12M
    if (view->strides == NULL) return 1; /* C-contiguous by definition */
503
504
    /* strides != NULL implies both of these */
505
1.12M
    assert(view->ndim > 0);
506
1.12M
    assert(view->shape != NULL);
507
508
1.12M
    sd = view->itemsize;
509
2.24M
    for (i=view->ndim-1; i>=0; i--) {
510
1.12M
        dim = view->shape[i];
511
1.12M
        if (dim > 1 && view->strides[i] != sd) {
512
0
            return 0;
513
0
        }
514
1.12M
        sd *= dim;
515
1.12M
    }
516
1.12M
    return 1;
517
1.12M
}
518
519
int
520
PyBuffer_IsContiguous(const Py_buffer *view, char order)
521
1.23M
{
522
523
1.23M
    if (view->suboffsets != NULL) return 0;
524
525
1.23M
    if (order == 'C')
526
1.23M
        return _IsCContiguous(view);
527
0
    else if (order == 'F')
528
0
        return _IsFortranContiguous(view);
529
0
    else if (order == 'A')
530
0
        return (_IsCContiguous(view) || _IsFortranContiguous(view));
531
0
    return 0;
532
1.23M
}
533
534
535
void*
536
PyBuffer_GetPointer(const Py_buffer *view, const Py_ssize_t *indices)
537
0
{
538
0
    char* pointer;
539
0
    int i;
540
0
    pointer = (char *)view->buf;
541
0
    for (i = 0; i < view->ndim; i++) {
542
0
        pointer += view->strides[i]*indices[i];
543
0
        if ((view->suboffsets != NULL) && (view->suboffsets[i] >= 0)) {
544
0
            pointer = *((char**)pointer) + view->suboffsets[i];
545
0
        }
546
0
    }
547
0
    return (void*)pointer;
548
0
}
549
550
551
static void
552
_Py_add_one_to_index_F(int nd, Py_ssize_t *index, const Py_ssize_t *shape)
553
0
{
554
0
    int k;
555
556
0
    for (k=0; k<nd; k++) {
557
0
        if (index[k] < shape[k]-1) {
558
0
            index[k]++;
559
0
            break;
560
0
        }
561
0
        else {
562
0
            index[k] = 0;
563
0
        }
564
0
    }
565
0
}
566
567
static void
568
_Py_add_one_to_index_C(int nd, Py_ssize_t *index, const Py_ssize_t *shape)
569
0
{
570
0
    int k;
571
572
0
    for (k=nd-1; k>=0; k--) {
573
0
        if (index[k] < shape[k]-1) {
574
0
            index[k]++;
575
0
            break;
576
0
        }
577
0
        else {
578
0
            index[k] = 0;
579
0
        }
580
0
    }
581
0
}
582
583
Py_ssize_t
584
PyBuffer_SizeFromFormat(const char *format)
585
0
{
586
0
    PyObject *calcsize = NULL;
587
0
    PyObject *res = NULL;
588
0
    PyObject *fmt = NULL;
589
0
    Py_ssize_t itemsize = -1;
590
591
0
    calcsize = PyImport_ImportModuleAttrString("struct", "calcsize");
592
0
    if (calcsize == NULL) {
593
0
        goto done;
594
0
    }
595
596
0
    fmt = PyUnicode_FromString(format);
597
0
    if (fmt == NULL) {
598
0
        goto done;
599
0
    }
600
601
0
    res = PyObject_CallFunctionObjArgs(calcsize, fmt, NULL);
602
0
    if (res == NULL) {
603
0
        goto done;
604
0
    }
605
606
0
    itemsize = PyLong_AsSsize_t(res);
607
0
    if (itemsize < 0) {
608
0
        goto done;
609
0
    }
610
611
0
done:
612
0
    Py_XDECREF(calcsize);
613
0
    Py_XDECREF(fmt);
614
0
    Py_XDECREF(res);
615
0
    return itemsize;
616
0
}
617
618
int
619
PyBuffer_FromContiguous(const Py_buffer *view, const void *buf, Py_ssize_t len, char fort)
620
0
{
621
0
    int k;
622
0
    void (*addone)(int, Py_ssize_t *, const Py_ssize_t *);
623
0
    Py_ssize_t *indices, elements;
624
0
    char *ptr;
625
0
    const char *src;
626
627
0
    if (len > view->len) {
628
0
        len = view->len;
629
0
    }
630
631
0
    if (PyBuffer_IsContiguous(view, fort)) {
632
        /* simplest copy is all that is needed */
633
0
        memcpy(view->buf, buf, len);
634
0
        return 0;
635
0
    }
636
637
    /* Otherwise a more elaborate scheme is needed */
638
639
    /* view->ndim <= 64 */
640
0
    indices = (Py_ssize_t *)PyMem_Malloc(sizeof(Py_ssize_t)*(view->ndim));
641
0
    if (indices == NULL) {
642
0
        PyErr_NoMemory();
643
0
        return -1;
644
0
    }
645
0
    for (k=0; k<view->ndim;k++) {
646
0
        indices[k] = 0;
647
0
    }
648
649
0
    if (fort == 'F') {
650
0
        addone = _Py_add_one_to_index_F;
651
0
    }
652
0
    else {
653
0
        addone = _Py_add_one_to_index_C;
654
0
    }
655
0
    src = buf;
656
    /* XXX : This is not going to be the fastest code in the world
657
             several optimizations are possible.
658
     */
659
0
    elements = len / view->itemsize;
660
0
    while (elements--) {
661
0
        ptr = PyBuffer_GetPointer(view, indices);
662
0
        memcpy(ptr, src, view->itemsize);
663
0
        src += view->itemsize;
664
0
        addone(view->ndim, indices, view->shape);
665
0
    }
666
667
0
    PyMem_Free(indices);
668
0
    return 0;
669
0
}
670
671
int PyObject_CopyData(PyObject *dest, PyObject *src)
672
0
{
673
0
    Py_buffer view_dest, view_src;
674
0
    int k;
675
0
    Py_ssize_t *indices, elements;
676
0
    char *dptr, *sptr;
677
678
0
    if (!PyObject_CheckBuffer(dest) ||
679
0
        !PyObject_CheckBuffer(src)) {
680
0
        PyErr_SetString(PyExc_TypeError,
681
0
                        "both destination and source must be "\
682
0
                        "bytes-like objects");
683
0
        return -1;
684
0
    }
685
686
0
    if (PyObject_GetBuffer(dest, &view_dest, PyBUF_FULL) != 0) return -1;
687
0
    if (PyObject_GetBuffer(src, &view_src, PyBUF_FULL_RO) != 0) {
688
0
        PyBuffer_Release(&view_dest);
689
0
        return -1;
690
0
    }
691
692
0
    if (view_dest.len < view_src.len) {
693
0
        PyErr_SetString(PyExc_BufferError,
694
0
                        "destination is too small to receive data from source");
695
0
        PyBuffer_Release(&view_dest);
696
0
        PyBuffer_Release(&view_src);
697
0
        return -1;
698
0
    }
699
700
0
    if ((PyBuffer_IsContiguous(&view_dest, 'C') &&
701
0
         PyBuffer_IsContiguous(&view_src, 'C')) ||
702
0
        (PyBuffer_IsContiguous(&view_dest, 'F') &&
703
0
         PyBuffer_IsContiguous(&view_src, 'F'))) {
704
        /* simplest copy is all that is needed */
705
0
        memcpy(view_dest.buf, view_src.buf, view_src.len);
706
0
        PyBuffer_Release(&view_dest);
707
0
        PyBuffer_Release(&view_src);
708
0
        return 0;
709
0
    }
710
711
    /* Otherwise a more elaborate copy scheme is needed */
712
713
    /* XXX(nnorwitz): need to check for overflow! */
714
0
    indices = (Py_ssize_t *)PyMem_Malloc(sizeof(Py_ssize_t)*view_src.ndim);
715
0
    if (indices == NULL) {
716
0
        PyErr_NoMemory();
717
0
        PyBuffer_Release(&view_dest);
718
0
        PyBuffer_Release(&view_src);
719
0
        return -1;
720
0
    }
721
0
    for (k=0; k<view_src.ndim;k++) {
722
0
        indices[k] = 0;
723
0
    }
724
0
    elements = 1;
725
0
    for (k=0; k<view_src.ndim; k++) {
726
        /* XXX(nnorwitz): can this overflow? */
727
0
        elements *= view_src.shape[k];
728
0
    }
729
0
    while (elements--) {
730
0
        _Py_add_one_to_index_C(view_src.ndim, indices, view_src.shape);
731
0
        dptr = PyBuffer_GetPointer(&view_dest, indices);
732
0
        sptr = PyBuffer_GetPointer(&view_src, indices);
733
0
        memcpy(dptr, sptr, view_src.itemsize);
734
0
    }
735
0
    PyMem_Free(indices);
736
0
    PyBuffer_Release(&view_dest);
737
0
    PyBuffer_Release(&view_src);
738
0
    return 0;
739
0
}
740
741
void
742
PyBuffer_FillContiguousStrides(int nd, Py_ssize_t *shape,
743
                               Py_ssize_t *strides, int itemsize,
744
                               char fort)
745
0
{
746
0
    int k;
747
0
    Py_ssize_t sd;
748
749
0
    sd = itemsize;
750
0
    if (fort == 'F') {
751
0
        for (k=0; k<nd; k++) {
752
0
            strides[k] = sd;
753
0
            sd *= shape[k];
754
0
        }
755
0
    }
756
0
    else {
757
0
        for (k=nd-1; k>=0; k--) {
758
0
            strides[k] = sd;
759
0
            sd *= shape[k];
760
0
        }
761
0
    }
762
0
    return;
763
0
}
764
765
int
766
PyBuffer_FillInfo(Py_buffer *view, PyObject *obj, void *buf, Py_ssize_t len,
767
                  int readonly, int flags)
768
17.1M
{
769
17.1M
    if (view == NULL) {
770
0
        PyErr_SetString(PyExc_BufferError,
771
0
                        "PyBuffer_FillInfo: view==NULL argument is obsolete");
772
0
        return -1;
773
0
    }
774
775
17.1M
    if (flags != PyBUF_SIMPLE) {  /* fast path */
776
1.52M
        if (flags == PyBUF_READ || flags == PyBUF_WRITE) {
777
0
            PyErr_BadInternalCall();
778
0
            return -1;
779
0
        }
780
1.52M
        if (((flags & PyBUF_WRITABLE) == PyBUF_WRITABLE) &&
781
8
            (readonly == 1)) {
782
0
            PyErr_SetString(PyExc_BufferError,
783
0
                            "Object is not writable.");
784
0
            return -1;
785
0
        }
786
1.52M
    }
787
788
17.1M
    view->obj = Py_XNewRef(obj);
789
17.1M
    view->buf = buf;
790
17.1M
    view->len = len;
791
17.1M
    view->readonly = readonly;
792
17.1M
    view->itemsize = 1;
793
17.1M
    view->format = NULL;
794
17.1M
    if ((flags & PyBUF_FORMAT) == PyBUF_FORMAT)
795
1.52M
        view->format = "B";
796
17.1M
    view->ndim = 1;
797
17.1M
    view->shape = NULL;
798
17.1M
    if ((flags & PyBUF_ND) == PyBUF_ND)
799
1.52M
        view->shape = &(view->len);
800
17.1M
    view->strides = NULL;
801
17.1M
    if ((flags & PyBUF_STRIDES) == PyBUF_STRIDES)
802
1.52M
        view->strides = &(view->itemsize);
803
17.1M
    view->suboffsets = NULL;
804
17.1M
    view->internal = NULL;
805
17.1M
    return 0;
806
17.1M
}
807
808
void
809
PyBuffer_Release(Py_buffer *view)
810
18.5M
{
811
18.5M
    PyObject *obj = view->obj;
812
18.5M
    PyBufferProcs *pb;
813
18.5M
    if (obj == NULL)
814
1.30M
        return;
815
17.2M
    pb = Py_TYPE(obj)->tp_as_buffer;
816
17.2M
    if (pb && pb->bf_releasebuffer) {
817
1.47M
        pb->bf_releasebuffer(obj, view);
818
1.47M
    }
819
17.2M
    view->obj = NULL;
820
17.2M
    Py_DECREF(obj);
821
17.2M
}
822
823
static int
824
_buffer_release_call(void *arg)
825
0
{
826
0
    PyBuffer_Release((Py_buffer *)arg);
827
0
    return 0;
828
0
}
829
830
int
831
_PyBuffer_ReleaseInInterpreter(PyInterpreterState *interp,
832
                               Py_buffer *view)
833
0
{
834
0
    return _Py_CallInInterpreter(interp, _buffer_release_call, view);
835
0
}
836
837
int
838
_PyBuffer_ReleaseInInterpreterAndRawFree(PyInterpreterState *interp,
839
                                         Py_buffer *view)
840
0
{
841
0
    return _Py_CallInInterpreterAndRawFree(interp, _buffer_release_call, view);
842
0
}
843
844
PyObject *
845
PyObject_Format(PyObject *obj, PyObject *format_spec)
846
207k
{
847
207k
    PyObject *meth;
848
207k
    PyObject *empty = NULL;
849
207k
    PyObject *result = NULL;
850
851
207k
    if (format_spec != NULL && !PyUnicode_Check(format_spec)) {
852
0
        PyErr_Format(PyExc_SystemError,
853
0
                     "Format specifier must be a string, not %.200s",
854
0
                     Py_TYPE(format_spec)->tp_name);
855
0
        return NULL;
856
0
    }
857
858
    /* Fast path for common types. */
859
207k
    if (format_spec == NULL || PyUnicode_GET_LENGTH(format_spec) == 0) {
860
207k
        if (PyUnicode_CheckExact(obj)) {
861
0
            return Py_NewRef(obj);
862
0
        }
863
207k
        if (PyLong_CheckExact(obj)) {
864
1.09k
            return PyObject_Str(obj);
865
1.09k
        }
866
207k
    }
867
868
    /* If no format_spec is provided, use an empty string */
869
206k
    if (format_spec == NULL) {
870
0
        empty = Py_GetConstant(Py_CONSTANT_EMPTY_STR);
871
0
        format_spec = empty;
872
0
    }
873
874
    /* Find the (unbound!) __format__ method */
875
206k
    meth = _PyObject_LookupSpecial(obj, &_Py_ID(__format__));
876
206k
    if (meth == NULL) {
877
0
        PyThreadState *tstate = _PyThreadState_GET();
878
0
        if (!_PyErr_Occurred(tstate)) {
879
0
            _PyErr_Format(tstate, PyExc_TypeError,
880
0
                          "Type %.100s doesn't define __format__",
881
0
                          Py_TYPE(obj)->tp_name);
882
0
        }
883
0
        goto done;
884
0
    }
885
886
    /* And call it. */
887
206k
    result = PyObject_CallOneArg(meth, format_spec);
888
206k
    Py_DECREF(meth);
889
890
206k
    if (result && !PyUnicode_Check(result)) {
891
0
        PyErr_Format(PyExc_TypeError,
892
0
                     "%T.__format__() must return a str, not %T",
893
0
                     obj, result);
894
0
        Py_SETREF(result, NULL);
895
0
        goto done;
896
0
    }
897
898
206k
done:
899
206k
    Py_XDECREF(empty);
900
206k
    return result;
901
206k
}
902
/* Operations on numbers */
903
904
int
905
PyNumber_Check(PyObject *o)
906
11.2M
{
907
11.2M
    if (o == NULL)
908
0
        return 0;
909
11.2M
    PyNumberMethods *nb = Py_TYPE(o)->tp_as_number;
910
11.2M
    return nb && (nb->nb_index || nb->nb_int || nb->nb_float || PyComplex_Check(o));
911
11.2M
}
912
913
/* Binary operators */
914
915
32.8M
#define NB_SLOT(x) offsetof(PyNumberMethods, x)
916
#define NB_BINOP(nb_methods, slot) \
917
40.9M
        (*(binaryfunc*)(& ((char*)nb_methods)[slot]))
918
#define NB_TERNOP(nb_methods, slot) \
919
101
        (*(ternaryfunc*)(& ((char*)nb_methods)[slot]))
920
921
/*
922
  Calling scheme used for binary operations:
923
924
  Order operations are tried until either a valid result or error:
925
    w.op(v,w)[*], v.op(v,w), w.op(v,w)
926
927
  [*] only when Py_TYPE(v) != Py_TYPE(w) && Py_TYPE(w) is a subclass of
928
      Py_TYPE(v)
929
 */
930
931
static PyObject *
932
binary_op1(PyObject *v, PyObject *w, const int op_slot
933
#ifndef NDEBUG
934
           , const char *op_name
935
#endif
936
           )
937
54.5M
{
938
54.5M
    binaryfunc slotv;
939
54.5M
    if (Py_TYPE(v)->tp_as_number != NULL) {
940
32.8M
        slotv = NB_BINOP(Py_TYPE(v)->tp_as_number, op_slot);
941
32.8M
    }
942
21.7M
    else {
943
21.7M
        slotv = NULL;
944
21.7M
    }
945
946
54.5M
    binaryfunc slotw;
947
54.5M
    if (!Py_IS_TYPE(w, Py_TYPE(v)) && Py_TYPE(w)->tp_as_number != NULL) {
948
7.38M
        slotw = NB_BINOP(Py_TYPE(w)->tp_as_number, op_slot);
949
7.38M
        if (slotw == slotv) {
950
44.3k
            slotw = NULL;
951
44.3k
        }
952
7.38M
    }
953
47.1M
    else {
954
47.1M
        slotw = NULL;
955
47.1M
    }
956
957
54.5M
    if (slotv) {
958
32.3M
        PyObject *x;
959
32.3M
        if (slotw && PyType_IsSubtype(Py_TYPE(w), Py_TYPE(v))) {
960
220
            x = slotw(v, w);
961
220
            if (x != Py_NotImplemented)
962
220
                return x;
963
0
            Py_DECREF(x); /* can't do it */
964
0
            slotw = NULL;
965
0
        }
966
32.3M
        x = slotv(v, w);
967
32.3M
        assert(_Py_CheckSlotResult(v, op_name, x != NULL));
968
32.3M
        if (x != Py_NotImplemented) {
969
32.3M
            return x;
970
32.3M
        }
971
12
        Py_DECREF(x); /* can't do it */
972
12
    }
973
22.1M
    if (slotw) {
974
397k
        PyObject *x = slotw(v, w);
975
397k
        assert(_Py_CheckSlotResult(w, op_name, x != NULL));
976
397k
        if (x != Py_NotImplemented) {
977
2
            return x;
978
2
        }
979
397k
        Py_DECREF(x); /* can't do it */
980
397k
    }
981
22.1M
    Py_RETURN_NOTIMPLEMENTED;
982
22.1M
}
983
984
#ifdef NDEBUG
985
53.9M
#  define BINARY_OP1(v, w, op_slot, op_name) binary_op1(v, w, op_slot)
986
#else
987
#  define BINARY_OP1(v, w, op_slot, op_name) binary_op1(v, w, op_slot, op_name)
988
#endif
989
990
static PyObject *
991
binop_type_error(PyObject *v, PyObject *w, const char *op_name)
992
0
{
993
0
    PyErr_Format(PyExc_TypeError,
994
0
                 "unsupported operand type(s) for %.100s: "
995
0
                 "'%.100s' and '%.100s'",
996
0
                 op_name,
997
0
                 Py_TYPE(v)->tp_name,
998
0
                 Py_TYPE(w)->tp_name);
999
0
    return NULL;
1000
0
}
1001
1002
static PyObject *
1003
binary_op(PyObject *v, PyObject *w, const int op_slot, const char *op_name)
1004
31.5M
{
1005
31.5M
    PyObject *result = BINARY_OP1(v, w, op_slot, op_name);
1006
31.5M
    if (result == Py_NotImplemented) {
1007
0
        Py_DECREF(result);
1008
0
        return binop_type_error(v, w, op_name);
1009
0
    }
1010
31.5M
    return result;
1011
31.5M
}
1012
1013
1014
/*
1015
  Calling scheme used for ternary operations:
1016
1017
  Order operations are tried until either a valid result or error:
1018
    v.op(v,w,z), w.op(v,w,z), z.op(v,w,z)
1019
 */
1020
1021
static PyObject *
1022
ternary_op(PyObject *v,
1023
           PyObject *w,
1024
           PyObject *z,
1025
           const int op_slot,
1026
           const char *op_name
1027
           )
1028
101
{
1029
101
    PyNumberMethods *mv = Py_TYPE(v)->tp_as_number;
1030
101
    PyNumberMethods *mw = Py_TYPE(w)->tp_as_number;
1031
1032
101
    ternaryfunc slotv;
1033
101
    if (mv != NULL) {
1034
101
        slotv = NB_TERNOP(mv, op_slot);
1035
101
    }
1036
0
    else {
1037
0
        slotv = NULL;
1038
0
    }
1039
1040
101
    ternaryfunc slotw;
1041
101
    if (!Py_IS_TYPE(w, Py_TYPE(v)) && mw != NULL) {
1042
0
        slotw = NB_TERNOP(mw, op_slot);
1043
0
        if (slotw == slotv) {
1044
0
            slotw = NULL;
1045
0
        }
1046
0
    }
1047
101
    else {
1048
101
        slotw = NULL;
1049
101
    }
1050
1051
101
    if (slotv) {
1052
101
        PyObject *x;
1053
101
        if (slotw && PyType_IsSubtype(Py_TYPE(w), Py_TYPE(v))) {
1054
0
            x = slotw(v, w, z);
1055
0
            if (x != Py_NotImplemented) {
1056
0
                return x;
1057
0
            }
1058
0
            Py_DECREF(x); /* can't do it */
1059
0
            slotw = NULL;
1060
0
        }
1061
101
        x = slotv(v, w, z);
1062
101
        assert(_Py_CheckSlotResult(v, op_name, x != NULL));
1063
101
        if (x != Py_NotImplemented) {
1064
101
            return x;
1065
101
        }
1066
0
        Py_DECREF(x); /* can't do it */
1067
0
    }
1068
0
    if (slotw) {
1069
0
        PyObject *x = slotw(v, w, z);
1070
0
        assert(_Py_CheckSlotResult(w, op_name, x != NULL));
1071
0
        if (x != Py_NotImplemented) {
1072
0
            return x;
1073
0
        }
1074
0
        Py_DECREF(x); /* can't do it */
1075
0
    }
1076
1077
0
    PyNumberMethods *mz = Py_TYPE(z)->tp_as_number;
1078
0
    if (mz != NULL) {
1079
0
        ternaryfunc slotz = NB_TERNOP(mz, op_slot);
1080
0
        if (slotz == slotv || slotz == slotw) {
1081
0
            slotz = NULL;
1082
0
        }
1083
0
        if (slotz) {
1084
0
            PyObject *x = slotz(v, w, z);
1085
0
            assert(_Py_CheckSlotResult(z, op_name, x != NULL));
1086
0
            if (x != Py_NotImplemented) {
1087
0
                return x;
1088
0
            }
1089
0
            Py_DECREF(x); /* can't do it */
1090
0
        }
1091
0
    }
1092
1093
0
    if (z == Py_None) {
1094
0
        PyErr_Format(
1095
0
            PyExc_TypeError,
1096
0
            "unsupported operand type(s) for %.100s: "
1097
0
            "'%.100s' and '%.100s'",
1098
0
            op_name,
1099
0
            Py_TYPE(v)->tp_name,
1100
0
            Py_TYPE(w)->tp_name);
1101
0
    }
1102
0
    else {
1103
0
        PyErr_Format(
1104
0
            PyExc_TypeError,
1105
0
            "unsupported operand type(s) for %.100s: "
1106
0
            "'%.100s', '%.100s', '%.100s'",
1107
0
            op_name,
1108
0
            Py_TYPE(v)->tp_name,
1109
0
            Py_TYPE(w)->tp_name,
1110
0
            Py_TYPE(z)->tp_name);
1111
0
    }
1112
0
    return NULL;
1113
0
}
1114
1115
#define BINARY_FUNC(func, op, op_name) \
1116
    PyObject * \
1117
31.5M
    func(PyObject *v, PyObject *w) { \
1118
31.5M
        return binary_op(v, w, NB_SLOT(op), op_name); \
1119
31.5M
    }
1120
1121
764k
BINARY_FUNC(PyNumber_Or, nb_or, "|")
1122
172
BINARY_FUNC(PyNumber_Xor, nb_xor, "^")
1123
3.64k
BINARY_FUNC(PyNumber_And, nb_and, "&")
1124
83
BINARY_FUNC(PyNumber_Lshift, nb_lshift, "<<")
1125
156
BINARY_FUNC(PyNumber_Rshift, nb_rshift, ">>")
1126
827
BINARY_FUNC(PyNumber_Subtract, nb_subtract, "-")
1127
0
BINARY_FUNC(PyNumber_Divmod, nb_divmod, "divmod()")
1128
1129
PyObject *
1130
PyNumber_Add(PyObject *v, PyObject *w)
1131
21.8M
{
1132
21.8M
    PyObject *result = BINARY_OP1(v, w, NB_SLOT(nb_add), "+");
1133
21.8M
    if (result != Py_NotImplemented) {
1134
47.6k
        return result;
1135
47.6k
    }
1136
21.7M
    Py_DECREF(result);
1137
1138
21.7M
    PySequenceMethods *m = Py_TYPE(v)->tp_as_sequence;
1139
21.7M
    if (m && m->sq_concat) {
1140
21.7M
        result = (*m->sq_concat)(v, w);
1141
21.7M
        assert(_Py_CheckSlotResult(v, "+", result != NULL));
1142
21.7M
        return result;
1143
21.7M
    }
1144
1145
0
    return binop_type_error(v, w, "+");
1146
21.7M
}
1147
1148
static PyObject *
1149
sequence_repeat(ssizeargfunc repeatfunc, PyObject *seq, PyObject *n)
1150
397k
{
1151
397k
    Py_ssize_t count;
1152
397k
    if (_PyIndex_Check(n)) {
1153
397k
        count = PyNumber_AsSsize_t(n, PyExc_OverflowError);
1154
397k
        if (count == -1 && PyErr_Occurred()) {
1155
0
            return NULL;
1156
0
        }
1157
397k
    }
1158
0
    else {
1159
0
        return type_error("can't multiply sequence by "
1160
0
                          "non-int of type '%.200s'", n);
1161
0
    }
1162
397k
    PyObject *res = (*repeatfunc)(seq, count);
1163
397k
    assert(_Py_CheckSlotResult(seq, "*", res != NULL));
1164
397k
    return res;
1165
397k
}
1166
1167
PyObject *
1168
PyNumber_Multiply(PyObject *v, PyObject *w)
1169
542k
{
1170
542k
    PyObject *result = BINARY_OP1(v, w, NB_SLOT(nb_multiply), "*");
1171
542k
    if (result == Py_NotImplemented) {
1172
397k
        PySequenceMethods *mv = Py_TYPE(v)->tp_as_sequence;
1173
397k
        PySequenceMethods *mw = Py_TYPE(w)->tp_as_sequence;
1174
397k
        Py_DECREF(result);
1175
397k
        if  (mv && mv->sq_repeat) {
1176
397k
            return sequence_repeat(mv->sq_repeat, v, w);
1177
397k
        }
1178
10
        else if (mw && mw->sq_repeat) {
1179
10
            return sequence_repeat(mw->sq_repeat, w, v);
1180
10
        }
1181
0
        result = binop_type_error(v, w, "*");
1182
0
    }
1183
144k
    return result;
1184
542k
}
1185
1186
0
BINARY_FUNC(PyNumber_MatrixMultiply, nb_matrix_multiply, "@")
1187
1.44M
BINARY_FUNC(PyNumber_FloorDivide, nb_floor_divide, "//")
1188
12.8k
BINARY_FUNC(PyNumber_TrueDivide, nb_true_divide, "/")
1189
29.3M
BINARY_FUNC(PyNumber_Remainder, nb_remainder, "%")
1190
1191
PyObject *
1192
PyNumber_Power(PyObject *v, PyObject *w, PyObject *z)
1193
101
{
1194
101
    return ternary_op(v, w, z, NB_SLOT(nb_power), "** or pow()");
1195
101
}
1196
1197
PyObject *
1198
_PyNumber_PowerNoMod(PyObject *lhs, PyObject *rhs)
1199
88
{
1200
88
    return PyNumber_Power(lhs, rhs, Py_None);
1201
88
}
1202
1203
/* Binary in-place operators */
1204
1205
/* The in-place operators are defined to fall back to the 'normal',
1206
   non in-place operations, if the in-place methods are not in place.
1207
1208
   - If the left hand object has the appropriate struct members, and
1209
     they are filled, call the appropriate function and return the
1210
     result.  No coercion is done on the arguments; the left-hand object
1211
     is the one the operation is performed on, and it's up to the
1212
     function to deal with the right-hand object.
1213
1214
   - Otherwise, in-place modification is not supported. Handle it exactly as
1215
     a non in-place operation of the same kind.
1216
1217
   */
1218
1219
static PyObject *
1220
binary_iop1(PyObject *v, PyObject *w, const int iop_slot, const int op_slot
1221
#ifndef NDEBUG
1222
            , const char *op_name
1223
#endif
1224
            )
1225
699k
{
1226
699k
    PyNumberMethods *mv = Py_TYPE(v)->tp_as_number;
1227
699k
    if (mv != NULL) {
1228
698k
        binaryfunc slot = NB_BINOP(mv, iop_slot);
1229
698k
        if (slot) {
1230
66.0k
            PyObject *x = (slot)(v, w);
1231
66.0k
            assert(_Py_CheckSlotResult(v, op_name, x != NULL));
1232
66.0k
            if (x != Py_NotImplemented) {
1233
66.0k
                return x;
1234
66.0k
            }
1235
0
            Py_DECREF(x);
1236
0
        }
1237
698k
    }
1238
633k
#ifdef NDEBUG
1239
633k
    return binary_op1(v, w, op_slot);
1240
#else
1241
    return binary_op1(v, w, op_slot, op_name);
1242
#endif
1243
699k
}
1244
1245
#ifdef NDEBUG
1246
699k
#  define BINARY_IOP1(v, w, iop_slot, op_slot, op_name) binary_iop1(v, w, iop_slot, op_slot)
1247
#else
1248
#  define BINARY_IOP1(v, w, iop_slot, op_slot, op_name) binary_iop1(v, w, iop_slot, op_slot, op_name)
1249
#endif
1250
1251
static PyObject *
1252
binary_iop(PyObject *v, PyObject *w, const int iop_slot, const int op_slot,
1253
                const char *op_name)
1254
625k
{
1255
625k
    PyObject *result = BINARY_IOP1(v, w, iop_slot, op_slot, op_name);
1256
625k
    if (result == Py_NotImplemented) {
1257
0
        Py_DECREF(result);
1258
0
        return binop_type_error(v, w, op_name);
1259
0
    }
1260
625k
    return result;
1261
625k
}
1262
1263
static PyObject *
1264
ternary_iop(PyObject *v, PyObject *w, PyObject *z, const int iop_slot, const int op_slot,
1265
                const char *op_name)
1266
0
{
1267
0
    PyNumberMethods *mv = Py_TYPE(v)->tp_as_number;
1268
0
    if (mv != NULL) {
1269
0
        ternaryfunc slot = NB_TERNOP(mv, iop_slot);
1270
0
        if (slot) {
1271
0
            PyObject *x = (slot)(v, w, z);
1272
0
            if (x != Py_NotImplemented) {
1273
0
                return x;
1274
0
            }
1275
0
            Py_DECREF(x);
1276
0
        }
1277
0
    }
1278
0
    return ternary_op(v, w, z, op_slot, op_name);
1279
0
}
1280
1281
#define INPLACE_BINOP(func, iop, op, op_name) \
1282
    PyObject * \
1283
625k
    func(PyObject *v, PyObject *w) { \
1284
625k
        return binary_iop(v, w, NB_SLOT(iop), NB_SLOT(op), op_name); \
1285
625k
    }
1286
1287
66.2k
INPLACE_BINOP(PyNumber_InPlaceOr, nb_inplace_or, nb_or, "|=")
1288
8
INPLACE_BINOP(PyNumber_InPlaceXor, nb_inplace_xor, nb_xor, "^=")
1289
30
INPLACE_BINOP(PyNumber_InPlaceAnd, nb_inplace_and, nb_and, "&=")
1290
492
INPLACE_BINOP(PyNumber_InPlaceLshift, nb_inplace_lshift, nb_lshift, "<<=")
1291
0
INPLACE_BINOP(PyNumber_InPlaceRshift, nb_inplace_rshift, nb_rshift, ">>=")
1292
18
INPLACE_BINOP(PyNumber_InPlaceSubtract, nb_inplace_subtract, nb_subtract, "-=")
1293
0
INPLACE_BINOP(PyNumber_InPlaceMatrixMultiply, nb_inplace_matrix_multiply, nb_matrix_multiply, "@=")
1294
558k
INPLACE_BINOP(PyNumber_InPlaceFloorDivide, nb_inplace_floor_divide, nb_floor_divide, "//=")
1295
0
INPLACE_BINOP(PyNumber_InPlaceTrueDivide, nb_inplace_true_divide, nb_true_divide,  "/=")
1296
0
INPLACE_BINOP(PyNumber_InPlaceRemainder, nb_inplace_remainder, nb_remainder, "%=")
1297
1298
PyObject *
1299
PyNumber_InPlaceAdd(PyObject *v, PyObject *w)
1300
73.7k
{
1301
73.7k
    PyObject *result = BINARY_IOP1(v, w, NB_SLOT(nb_inplace_add),
1302
73.7k
                                   NB_SLOT(nb_add), "+=");
1303
73.7k
    if (result == Py_NotImplemented) {
1304
649
        PySequenceMethods *m = Py_TYPE(v)->tp_as_sequence;
1305
649
        Py_DECREF(result);
1306
649
        if (m != NULL) {
1307
649
            binaryfunc func = m->sq_inplace_concat;
1308
649
            if (func == NULL)
1309
117
                func = m->sq_concat;
1310
649
            if (func != NULL) {
1311
649
                result = func(v, w);
1312
649
                assert(_Py_CheckSlotResult(v, "+=", result != NULL));
1313
649
                return result;
1314
649
            }
1315
649
        }
1316
0
        result = binop_type_error(v, w, "+=");
1317
0
    }
1318
73.0k
    return result;
1319
73.7k
}
1320
1321
PyObject *
1322
PyNumber_InPlaceMultiply(PyObject *v, PyObject *w)
1323
0
{
1324
0
    PyObject *result = BINARY_IOP1(v, w, NB_SLOT(nb_inplace_multiply),
1325
0
                                   NB_SLOT(nb_multiply), "*=");
1326
0
    if (result == Py_NotImplemented) {
1327
0
        ssizeargfunc f = NULL;
1328
0
        PySequenceMethods *mv = Py_TYPE(v)->tp_as_sequence;
1329
0
        PySequenceMethods *mw = Py_TYPE(w)->tp_as_sequence;
1330
0
        Py_DECREF(result);
1331
0
        if (mv != NULL) {
1332
0
            f = mv->sq_inplace_repeat;
1333
0
            if (f == NULL)
1334
0
                f = mv->sq_repeat;
1335
0
            if (f != NULL)
1336
0
                return sequence_repeat(f, v, w);
1337
0
        }
1338
0
        else if (mw != NULL) {
1339
            /* Note that the right hand operand should not be
1340
             * mutated in this case so sq_inplace_repeat is not
1341
             * used. */
1342
0
            if (mw->sq_repeat)
1343
0
                return sequence_repeat(mw->sq_repeat, w, v);
1344
0
        }
1345
0
        result = binop_type_error(v, w, "*=");
1346
0
    }
1347
0
    return result;
1348
0
}
1349
1350
PyObject *
1351
PyNumber_InPlacePower(PyObject *v, PyObject *w, PyObject *z)
1352
0
{
1353
0
    return ternary_iop(v, w, z, NB_SLOT(nb_inplace_power),
1354
0
                                NB_SLOT(nb_power), "**=");
1355
0
}
1356
1357
PyObject *
1358
_PyNumber_InPlacePowerNoMod(PyObject *lhs, PyObject *rhs)
1359
0
{
1360
0
    return PyNumber_InPlacePower(lhs, rhs, Py_None);
1361
0
}
1362
1363
1364
/* Unary operators and functions */
1365
1366
#define UNARY_FUNC(func, op, meth_name, descr)                           \
1367
    PyObject *                                                           \
1368
14.6k
    func(PyObject *o) {                                                  \
1369
14.6k
        if (o == NULL) {                                                 \
1370
0
            return null_error();                                         \
1371
0
        }                                                                \
1372
14.6k
                                                                         \
1373
14.6k
        PyNumberMethods *m = Py_TYPE(o)->tp_as_number;                   \
1374
14.6k
        if (m && m->op) {                                                \
1375
14.6k
            PyObject *res = (*m->op)(o);                                 \
1376
14.6k
            assert(_Py_CheckSlotResult(o, #meth_name, res != NULL));     \
1377
14.6k
            return res;                                                  \
1378
14.6k
        }                                                                \
1379
14.6k
                                                                         \
1380
14.6k
        return type_error("bad operand type for "descr": '%.200s'", o);  \
1381
14.6k
    }
1382
1383
14.3k
UNARY_FUNC(PyNumber_Negative, nb_negative, __neg__, "unary -")
1384
0
UNARY_FUNC(PyNumber_Positive, nb_positive, __pos__, "unary +")
1385
335
UNARY_FUNC(PyNumber_Invert, nb_invert, __invert__, "unary ~")
1386
0
UNARY_FUNC(PyNumber_Absolute, nb_absolute, __abs__, "abs()")
1387
1388
1389
int
1390
PyIndex_Check(PyObject *obj)
1391
81.9M
{
1392
81.9M
    return _PyIndex_Check(obj);
1393
81.9M
}
1394
1395
1396
/* Return a Python int from the object item.
1397
   Can return an instance of int subclass.
1398
   Raise TypeError if the result is not an int
1399
   or if the object cannot be interpreted as an index.
1400
*/
1401
PyObject *
1402
_PyNumber_Index(PyObject *item)
1403
437M
{
1404
437M
    if (item == NULL) {
1405
0
        return null_error();
1406
0
    }
1407
1408
437M
    if (PyLong_Check(item)) {
1409
437M
        return Py_NewRef(item);
1410
437M
    }
1411
4.18k
    if (!_PyIndex_Check(item)) {
1412
4.18k
        PyErr_Format(PyExc_TypeError,
1413
4.18k
                     "'%.200s' object cannot be interpreted "
1414
4.18k
                     "as an integer", Py_TYPE(item)->tp_name);
1415
4.18k
        return NULL;
1416
4.18k
    }
1417
1418
0
    PyObject *result = Py_TYPE(item)->tp_as_number->nb_index(item);
1419
0
    assert(_Py_CheckSlotResult(item, "__index__", result != NULL));
1420
0
    if (!result || PyLong_CheckExact(result)) {
1421
0
        return result;
1422
0
    }
1423
1424
0
    if (!PyLong_Check(result)) {
1425
0
        PyErr_Format(PyExc_TypeError,
1426
0
                     "%T.__index__() must return an int, not %T",
1427
0
                     item, result);
1428
0
        Py_DECREF(result);
1429
0
        return NULL;
1430
0
    }
1431
    /* Issue #17576: warn if 'result' not of exact type int. */
1432
0
    if (PyErr_WarnFormat(PyExc_DeprecationWarning, 1,
1433
0
            "%T.__index__() must return an int, not %T.  "
1434
0
            "The ability to return an instance of a strict subclass of int "
1435
0
            "is deprecated, and may be removed in a future version of Python.",
1436
0
            item, result)) {
1437
0
        Py_DECREF(result);
1438
0
        return NULL;
1439
0
    }
1440
0
    return result;
1441
0
}
1442
1443
/* Return an exact Python int from the object item.
1444
   Raise TypeError if the result is not an int
1445
   or if the object cannot be interpreted as an index.
1446
*/
1447
PyObject *
1448
PyNumber_Index(PyObject *item)
1449
23.3M
{
1450
23.3M
    PyObject *result = _PyNumber_Index(item);
1451
23.3M
    if (result != NULL && !PyLong_CheckExact(result)) {
1452
0
        Py_SETREF(result, _PyLong_Copy((PyLongObject *)result));
1453
0
    }
1454
23.3M
    return result;
1455
23.3M
}
1456
1457
/* Return an error on Overflow only if err is not NULL*/
1458
1459
Py_ssize_t
1460
PyNumber_AsSsize_t(PyObject *item, PyObject *err)
1461
341M
{
1462
341M
    Py_ssize_t result;
1463
341M
    PyObject *runerr;
1464
341M
    PyObject *value = _PyNumber_Index(item);
1465
341M
    if (value == NULL)
1466
2.97k
        return -1;
1467
1468
    /* We're done if PyLong_AsSsize_t() returns without error. */
1469
341M
    result = PyLong_AsSsize_t(value);
1470
341M
    if (result != -1)
1471
320M
        goto finish;
1472
1473
21.5M
    PyThreadState *tstate = _PyThreadState_GET();
1474
21.5M
    runerr = _PyErr_Occurred(tstate);
1475
21.5M
    if (!runerr) {
1476
21.5M
        goto finish;
1477
21.5M
    }
1478
1479
    /* Error handling code -- only manage OverflowError differently */
1480
0
    if (!PyErr_GivenExceptionMatches(runerr, PyExc_OverflowError)) {
1481
0
        goto finish;
1482
0
    }
1483
0
    _PyErr_Clear(tstate);
1484
1485
    /* If no error-handling desired then the default clipping
1486
       is sufficient. */
1487
0
    if (!err) {
1488
0
        assert(PyLong_Check(value));
1489
        /* Whether or not it is less than or equal to
1490
           zero is determined by the sign of ob_size
1491
        */
1492
0
        if (_PyLong_IsNegative((PyLongObject *)value))
1493
0
            result = PY_SSIZE_T_MIN;
1494
0
        else
1495
0
            result = PY_SSIZE_T_MAX;
1496
0
    }
1497
0
    else {
1498
        /* Otherwise replace the error with caller's error object. */
1499
0
        _PyErr_Format(tstate, err,
1500
0
                      "cannot fit '%.200s' into an index-sized integer",
1501
0
                      Py_TYPE(item)->tp_name);
1502
0
    }
1503
1504
341M
 finish:
1505
341M
    Py_DECREF(value);
1506
341M
    return result;
1507
0
}
1508
1509
1510
PyObject *
1511
PyNumber_Long(PyObject *o)
1512
4.23M
{
1513
4.23M
    PyObject *result;
1514
4.23M
    PyNumberMethods *m;
1515
4.23M
    Py_buffer view;
1516
1517
4.23M
    if (o == NULL) {
1518
0
        return null_error();
1519
0
    }
1520
1521
4.23M
    if (PyLong_CheckExact(o)) {
1522
3.61k
        return Py_NewRef(o);
1523
3.61k
    }
1524
4.22M
    m = Py_TYPE(o)->tp_as_number;
1525
4.22M
    if (m && m->nb_int) { /* This should include subclasses of int */
1526
        /* Convert using the nb_int slot, which should return something
1527
           of exact type int. */
1528
14.4k
        result = m->nb_int(o);
1529
14.4k
        assert(_Py_CheckSlotResult(o, "__int__", result != NULL));
1530
14.4k
        if (!result || PyLong_CheckExact(result)) {
1531
14.4k
            return result;
1532
14.4k
        }
1533
1534
0
        if (!PyLong_Check(result)) {
1535
0
            PyErr_Format(PyExc_TypeError,
1536
0
                         "%T.__int__() must return an int, not %T",
1537
0
                         o, result);
1538
0
            Py_DECREF(result);
1539
0
            return NULL;
1540
0
        }
1541
        /* Issue #17576: warn if 'result' not of exact type int. */
1542
0
        if (PyErr_WarnFormat(PyExc_DeprecationWarning, 1,
1543
0
                "%T.__int__() must return an int, not %T.  "
1544
0
                "The ability to return an instance of a strict subclass of int "
1545
0
                "is deprecated, and may be removed in a future version of Python.",
1546
0
                o, result)) {
1547
0
            Py_DECREF(result);
1548
0
            return NULL;
1549
0
        }
1550
0
        Py_SETREF(result, _PyLong_Copy((PyLongObject *)result));
1551
0
        return result;
1552
0
    }
1553
4.21M
    if (m && m->nb_index) {
1554
0
        return PyNumber_Index(o);
1555
0
    }
1556
1557
4.21M
    if (PyUnicode_Check(o))
1558
        /* The below check is done in PyLong_FromUnicodeObject(). */
1559
4.21M
        return PyLong_FromUnicodeObject(o, 10);
1560
1561
0
    if (PyBytes_Check(o))
1562
        /* need to do extra error checking that PyLong_FromString()
1563
         * doesn't do.  In particular int('9\x005') must raise an
1564
         * exception, not truncate at the null.
1565
         */
1566
0
        return _PyLong_FromBytes(PyBytes_AS_STRING(o),
1567
0
                                 PyBytes_GET_SIZE(o), 10);
1568
1569
0
    if (PyByteArray_Check(o))
1570
0
        return _PyLong_FromBytes(PyByteArray_AS_STRING(o),
1571
0
                                 PyByteArray_GET_SIZE(o), 10);
1572
1573
0
    if (PyObject_GetBuffer(o, &view, PyBUF_SIMPLE) == 0) {
1574
0
        PyObject *bytes;
1575
1576
        /* Copy to NUL-terminated buffer. */
1577
0
        bytes = PyBytes_FromStringAndSize((const char *)view.buf, view.len);
1578
0
        if (bytes == NULL) {
1579
0
            PyBuffer_Release(&view);
1580
0
            return NULL;
1581
0
        }
1582
0
        result = _PyLong_FromBytes(PyBytes_AS_STRING(bytes),
1583
0
                                   PyBytes_GET_SIZE(bytes), 10);
1584
0
        Py_DECREF(bytes);
1585
0
        PyBuffer_Release(&view);
1586
0
        return result;
1587
0
    }
1588
1589
0
    return type_error("int() argument must be a string, a bytes-like object "
1590
0
                      "or a real number, not '%.200s'", o);
1591
0
}
1592
1593
PyObject *
1594
PyNumber_Float(PyObject *o)
1595
0
{
1596
0
    if (o == NULL) {
1597
0
        return null_error();
1598
0
    }
1599
1600
0
    if (PyFloat_CheckExact(o)) {
1601
0
        return Py_NewRef(o);
1602
0
    }
1603
1604
0
    PyNumberMethods *m = Py_TYPE(o)->tp_as_number;
1605
0
    if (m && m->nb_float) { /* This should include subclasses of float */
1606
0
        PyObject *res = m->nb_float(o);
1607
0
        assert(_Py_CheckSlotResult(o, "__float__", res != NULL));
1608
0
        if (!res || PyFloat_CheckExact(res)) {
1609
0
            return res;
1610
0
        }
1611
1612
0
        if (!PyFloat_Check(res)) {
1613
0
            PyErr_Format(PyExc_TypeError,
1614
0
                         "%T.__float__() must return a float, not %T", o, res);
1615
0
            Py_DECREF(res);
1616
0
            return NULL;
1617
0
        }
1618
        /* Issue #26983: warn if 'res' not of exact type float. */
1619
0
        if (PyErr_WarnFormat(PyExc_DeprecationWarning, 1,
1620
0
                "%T.__float__() must return a float, not %T.  "
1621
0
                "The ability to return an instance of a strict subclass of float "
1622
0
                "is deprecated, and may be removed in a future version of Python.",
1623
0
                o, res)) {
1624
0
            Py_DECREF(res);
1625
0
            return NULL;
1626
0
        }
1627
0
        double val = PyFloat_AS_DOUBLE(res);
1628
0
        Py_DECREF(res);
1629
0
        return PyFloat_FromDouble(val);
1630
0
    }
1631
1632
0
    if (m && m->nb_index) {
1633
0
        PyObject *res = _PyNumber_Index(o);
1634
0
        if (!res) {
1635
0
            return NULL;
1636
0
        }
1637
0
        double val = PyLong_AsDouble(res);
1638
0
        Py_DECREF(res);
1639
0
        if (val == -1.0 && PyErr_Occurred()) {
1640
0
            return NULL;
1641
0
        }
1642
0
        return PyFloat_FromDouble(val);
1643
0
    }
1644
1645
    /* A float subclass with nb_float == NULL */
1646
0
    if (PyFloat_Check(o)) {
1647
0
        return PyFloat_FromDouble(PyFloat_AS_DOUBLE(o));
1648
0
    }
1649
0
    return PyFloat_FromString(o);
1650
0
}
1651
1652
1653
PyObject *
1654
PyNumber_ToBase(PyObject *n, int base)
1655
1.53k
{
1656
1.53k
    if (!(base == 2 || base == 8 || base == 10 || base == 16)) {
1657
0
        PyErr_SetString(PyExc_SystemError,
1658
0
                        "PyNumber_ToBase: base must be 2, 8, 10 or 16");
1659
0
        return NULL;
1660
0
    }
1661
1.53k
    PyObject *index = _PyNumber_Index(n);
1662
1.53k
    if (!index)
1663
0
        return NULL;
1664
1.53k
    PyObject *res = _PyLong_Format(index, base);
1665
1.53k
    Py_DECREF(index);
1666
1.53k
    return res;
1667
1.53k
}
1668
1669
1670
/* Operations on sequences */
1671
1672
int
1673
PySequence_Check(PyObject *s)
1674
1.51k
{
1675
1.51k
    if (PyDict_Check(s))
1676
0
        return 0;
1677
1.51k
    return Py_TYPE(s)->tp_as_sequence &&
1678
1.51k
        Py_TYPE(s)->tp_as_sequence->sq_item != NULL;
1679
1.51k
}
1680
1681
Py_ssize_t
1682
PySequence_Size(PyObject *s)
1683
128
{
1684
128
    if (s == NULL) {
1685
0
        null_error();
1686
0
        return -1;
1687
0
    }
1688
1689
128
    PySequenceMethods *m = Py_TYPE(s)->tp_as_sequence;
1690
128
    if (m && m->sq_length) {
1691
128
        Py_ssize_t len = m->sq_length(s);
1692
128
        assert(_Py_CheckSlotResult(s, "__len__", len >= 0));
1693
128
        return len;
1694
128
    }
1695
1696
0
    if (Py_TYPE(s)->tp_as_mapping && Py_TYPE(s)->tp_as_mapping->mp_length) {
1697
0
        type_error("%.200s is not a sequence", s);
1698
0
        return -1;
1699
0
    }
1700
0
    type_error("object of type '%.200s' has no len()", s);
1701
0
    return -1;
1702
0
}
1703
1704
#undef PySequence_Length
1705
Py_ssize_t
1706
PySequence_Length(PyObject *s)
1707
0
{
1708
0
    return PySequence_Size(s);
1709
0
}
1710
#define PySequence_Length PySequence_Size
1711
1712
PyObject *
1713
PySequence_Concat(PyObject *s, PyObject *o)
1714
0
{
1715
0
    if (s == NULL || o == NULL) {
1716
0
        return null_error();
1717
0
    }
1718
1719
0
    PySequenceMethods *m = Py_TYPE(s)->tp_as_sequence;
1720
0
    if (m && m->sq_concat) {
1721
0
        PyObject *res = m->sq_concat(s, o);
1722
0
        assert(_Py_CheckSlotResult(s, "+", res != NULL));
1723
0
        return res;
1724
0
    }
1725
1726
    /* Instances of user classes defining an __add__() method only
1727
       have an nb_add slot, not an sq_concat slot.      So we fall back
1728
       to nb_add if both arguments appear to be sequences. */
1729
0
    if (PySequence_Check(s) && PySequence_Check(o)) {
1730
0
        PyObject *result = BINARY_OP1(s, o, NB_SLOT(nb_add), "+");
1731
0
        if (result != Py_NotImplemented)
1732
0
            return result;
1733
0
        Py_DECREF(result);
1734
0
    }
1735
0
    return type_error("'%.200s' object can't be concatenated", s);
1736
0
}
1737
1738
PyObject *
1739
PySequence_Repeat(PyObject *o, Py_ssize_t count)
1740
0
{
1741
0
    if (o == NULL) {
1742
0
        return null_error();
1743
0
    }
1744
1745
0
    PySequenceMethods *m = Py_TYPE(o)->tp_as_sequence;
1746
0
    if (m && m->sq_repeat) {
1747
0
        PyObject *res = m->sq_repeat(o, count);
1748
0
        assert(_Py_CheckSlotResult(o, "*", res != NULL));
1749
0
        return res;
1750
0
    }
1751
1752
    /* Instances of user classes defining a __mul__() method only
1753
       have an nb_multiply slot, not an sq_repeat slot. so we fall back
1754
       to nb_multiply if o appears to be a sequence. */
1755
0
    if (PySequence_Check(o)) {
1756
0
        PyObject *n, *result;
1757
0
        n = PyLong_FromSsize_t(count);
1758
0
        if (n == NULL)
1759
0
            return NULL;
1760
0
        result = BINARY_OP1(o, n, NB_SLOT(nb_multiply), "*");
1761
0
        Py_DECREF(n);
1762
0
        if (result != Py_NotImplemented)
1763
0
            return result;
1764
0
        Py_DECREF(result);
1765
0
    }
1766
0
    return type_error("'%.200s' object can't be repeated", o);
1767
0
}
1768
1769
PyObject *
1770
PySequence_InPlaceConcat(PyObject *s, PyObject *o)
1771
0
{
1772
0
    if (s == NULL || o == NULL) {
1773
0
        return null_error();
1774
0
    }
1775
1776
0
    PySequenceMethods *m = Py_TYPE(s)->tp_as_sequence;
1777
0
    if (m && m->sq_inplace_concat) {
1778
0
        PyObject *res = m->sq_inplace_concat(s, o);
1779
0
        assert(_Py_CheckSlotResult(s, "+=", res != NULL));
1780
0
        return res;
1781
0
    }
1782
0
    if (m && m->sq_concat) {
1783
0
        PyObject *res = m->sq_concat(s, o);
1784
0
        assert(_Py_CheckSlotResult(s, "+", res != NULL));
1785
0
        return res;
1786
0
    }
1787
1788
0
    if (PySequence_Check(s) && PySequence_Check(o)) {
1789
0
        PyObject *result = BINARY_IOP1(s, o, NB_SLOT(nb_inplace_add),
1790
0
                                       NB_SLOT(nb_add), "+=");
1791
0
        if (result != Py_NotImplemented)
1792
0
            return result;
1793
0
        Py_DECREF(result);
1794
0
    }
1795
0
    return type_error("'%.200s' object can't be concatenated", s);
1796
0
}
1797
1798
PyObject *
1799
PySequence_InPlaceRepeat(PyObject *o, Py_ssize_t count)
1800
0
{
1801
0
    if (o == NULL) {
1802
0
        return null_error();
1803
0
    }
1804
1805
0
    PySequenceMethods *m = Py_TYPE(o)->tp_as_sequence;
1806
0
    if (m && m->sq_inplace_repeat) {
1807
0
        PyObject *res = m->sq_inplace_repeat(o, count);
1808
0
        assert(_Py_CheckSlotResult(o, "*=", res != NULL));
1809
0
        return res;
1810
0
    }
1811
0
    if (m && m->sq_repeat) {
1812
0
        PyObject *res = m->sq_repeat(o, count);
1813
0
        assert(_Py_CheckSlotResult(o, "*", res != NULL));
1814
0
        return res;
1815
0
    }
1816
1817
0
    if (PySequence_Check(o)) {
1818
0
        PyObject *n, *result;
1819
0
        n = PyLong_FromSsize_t(count);
1820
0
        if (n == NULL)
1821
0
            return NULL;
1822
0
        result = BINARY_IOP1(o, n, NB_SLOT(nb_inplace_multiply),
1823
0
                             NB_SLOT(nb_multiply), "*=");
1824
0
        Py_DECREF(n);
1825
0
        if (result != Py_NotImplemented)
1826
0
            return result;
1827
0
        Py_DECREF(result);
1828
0
    }
1829
0
    return type_error("'%.200s' object can't be repeated", o);
1830
0
}
1831
1832
PyObject *
1833
PySequence_GetItem(PyObject *s, Py_ssize_t i)
1834
17.3M
{
1835
17.3M
    if (s == NULL) {
1836
0
        return null_error();
1837
0
    }
1838
1839
17.3M
    PySequenceMethods *m = Py_TYPE(s)->tp_as_sequence;
1840
17.3M
    if (m && m->sq_item) {
1841
17.3M
        if (i < 0) {
1842
0
            if (m->sq_length) {
1843
0
                Py_ssize_t l = (*m->sq_length)(s);
1844
0
                assert(_Py_CheckSlotResult(s, "__len__", l >= 0));
1845
0
                if (l < 0) {
1846
0
                    return NULL;
1847
0
                }
1848
0
                i += l;
1849
0
            }
1850
0
        }
1851
17.3M
        PyObject *res = m->sq_item(s, i);
1852
17.3M
        assert(_Py_CheckSlotResult(s, "__getitem__", res != NULL));
1853
17.3M
        return res;
1854
17.3M
    }
1855
1856
0
    if (Py_TYPE(s)->tp_as_mapping && Py_TYPE(s)->tp_as_mapping->mp_subscript) {
1857
0
        return type_error("%.200s is not a sequence", s);
1858
0
    }
1859
0
    return type_error("'%.200s' object does not support indexing", s);
1860
0
}
1861
1862
PyObject *
1863
PySequence_GetSlice(PyObject *s, Py_ssize_t i1, Py_ssize_t i2)
1864
0
{
1865
0
    if (!s) {
1866
0
        return null_error();
1867
0
    }
1868
1869
0
    PyMappingMethods *mp = Py_TYPE(s)->tp_as_mapping;
1870
0
    if (mp && mp->mp_subscript) {
1871
0
        PyObject *slice = _PySlice_FromIndices(i1, i2);
1872
0
        if (!slice) {
1873
0
            return NULL;
1874
0
        }
1875
0
        PyObject *res = mp->mp_subscript(s, slice);
1876
0
        assert(_Py_CheckSlotResult(s, "__getitem__", res != NULL));
1877
0
        Py_DECREF(slice);
1878
0
        return res;
1879
0
    }
1880
1881
0
    return type_error("'%.200s' object is unsliceable", s);
1882
0
}
1883
1884
int
1885
PySequence_SetItem(PyObject *s, Py_ssize_t i, PyObject *o)
1886
0
{
1887
0
    if (s == NULL) {
1888
0
        null_error();
1889
0
        return -1;
1890
0
    }
1891
1892
0
    PySequenceMethods *m = Py_TYPE(s)->tp_as_sequence;
1893
0
    if (m && m->sq_ass_item) {
1894
0
        if (i < 0) {
1895
0
            if (m->sq_length) {
1896
0
                Py_ssize_t l = (*m->sq_length)(s);
1897
0
                assert(_Py_CheckSlotResult(s, "__len__", l >= 0));
1898
0
                if (l < 0) {
1899
0
                    return -1;
1900
0
                }
1901
0
                i += l;
1902
0
            }
1903
0
        }
1904
0
        int res = m->sq_ass_item(s, i, o);
1905
0
        assert(_Py_CheckSlotResult(s, "__setitem__", res >= 0));
1906
0
        return res;
1907
0
    }
1908
1909
0
    if (Py_TYPE(s)->tp_as_mapping && Py_TYPE(s)->tp_as_mapping->mp_ass_subscript) {
1910
0
        type_error("%.200s is not a sequence", s);
1911
0
        return -1;
1912
0
    }
1913
0
    type_error("'%.200s' object does not support item assignment", s);
1914
0
    return -1;
1915
0
}
1916
1917
int
1918
PySequence_DelItem(PyObject *s, Py_ssize_t i)
1919
7.49k
{
1920
7.49k
    if (s == NULL) {
1921
0
        null_error();
1922
0
        return -1;
1923
0
    }
1924
1925
7.49k
    PySequenceMethods *m = Py_TYPE(s)->tp_as_sequence;
1926
7.49k
    if (m && m->sq_ass_item) {
1927
7.49k
        if (i < 0) {
1928
0
            if (m->sq_length) {
1929
0
                Py_ssize_t l = (*m->sq_length)(s);
1930
0
                assert(_Py_CheckSlotResult(s, "__len__", l >= 0));
1931
0
                if (l < 0) {
1932
0
                    return -1;
1933
0
                }
1934
0
                i += l;
1935
0
            }
1936
0
        }
1937
7.49k
        int res = m->sq_ass_item(s, i, (PyObject *)NULL);
1938
7.49k
        assert(_Py_CheckSlotResult(s, "__delitem__", res >= 0));
1939
7.49k
        return res;
1940
7.49k
    }
1941
1942
0
    if (Py_TYPE(s)->tp_as_mapping && Py_TYPE(s)->tp_as_mapping->mp_ass_subscript) {
1943
0
        type_error("%.200s is not a sequence", s);
1944
0
        return -1;
1945
0
    }
1946
0
    type_error("'%.200s' object doesn't support item deletion", s);
1947
0
    return -1;
1948
0
}
1949
1950
int
1951
PySequence_SetSlice(PyObject *s, Py_ssize_t i1, Py_ssize_t i2, PyObject *o)
1952
0
{
1953
0
    if (s == NULL) {
1954
0
        null_error();
1955
0
        return -1;
1956
0
    }
1957
1958
0
    PyMappingMethods *mp = Py_TYPE(s)->tp_as_mapping;
1959
0
    if (mp && mp->mp_ass_subscript) {
1960
0
        PyObject *slice = _PySlice_FromIndices(i1, i2);
1961
0
        if (!slice)
1962
0
            return -1;
1963
0
        int res = mp->mp_ass_subscript(s, slice, o);
1964
0
        assert(_Py_CheckSlotResult(s, "__setitem__", res >= 0));
1965
0
        Py_DECREF(slice);
1966
0
        return res;
1967
0
    }
1968
1969
0
    type_error("'%.200s' object doesn't support slice assignment", s);
1970
0
    return -1;
1971
0
}
1972
1973
int
1974
PySequence_DelSlice(PyObject *s, Py_ssize_t i1, Py_ssize_t i2)
1975
0
{
1976
0
    if (s == NULL) {
1977
0
        null_error();
1978
0
        return -1;
1979
0
    }
1980
1981
0
    PyMappingMethods *mp = Py_TYPE(s)->tp_as_mapping;
1982
0
    if (mp && mp->mp_ass_subscript) {
1983
0
        PyObject *slice = _PySlice_FromIndices(i1, i2);
1984
0
        if (!slice) {
1985
0
            return -1;
1986
0
        }
1987
0
        int res = mp->mp_ass_subscript(s, slice, NULL);
1988
0
        assert(_Py_CheckSlotResult(s, "__delitem__", res >= 0));
1989
0
        Py_DECREF(slice);
1990
0
        return res;
1991
0
    }
1992
0
    type_error("'%.200s' object doesn't support slice deletion", s);
1993
0
    return -1;
1994
0
}
1995
1996
PyObject *
1997
PySequence_Tuple(PyObject *v)
1998
1.91M
{
1999
1.91M
    PyObject *it;  /* iter(v) */
2000
2001
1.91M
    if (v == NULL) {
2002
0
        return null_error();
2003
0
    }
2004
2005
    /* Special-case the common tuple and list cases, for efficiency. */
2006
1.91M
    if (PyTuple_CheckExact(v)) {
2007
        /* Note that we can't know whether it's safe to return
2008
           a tuple *subclass* instance as-is, hence the restriction
2009
           to exact tuples here.  In contrast, lists always make
2010
           a copy, so there's no need for exactness below. */
2011
1.62M
        return Py_NewRef(v);
2012
1.62M
    }
2013
285k
    if (PyList_CheckExact(v))
2014
285k
        return PyList_AsTuple(v);
2015
2016
    /* Get iterator. */
2017
355
    it = PyObject_GetIter(v);
2018
355
    if (it == NULL)
2019
0
        return NULL;
2020
2021
355
    Py_ssize_t n;
2022
355
    PyObject *buffer[8];
2023
1.73k
    for (n = 0; n < 8; n++) {
2024
1.70k
        PyObject *item = PyIter_Next(it);
2025
1.70k
        if (item == NULL) {
2026
329
            if (PyErr_Occurred()) {
2027
0
                goto fail;
2028
0
            }
2029
329
            Py_DECREF(it);
2030
329
            return _PyTuple_FromArraySteal(buffer, n);
2031
329
        }
2032
1.37k
        buffer[n] = item;
2033
1.37k
    }
2034
26
    PyListObject *list = (PyListObject *)PyList_New(16);
2035
26
    if (list == NULL) {
2036
0
        goto fail;
2037
0
    }
2038
26
    assert(n == 8);
2039
26
    Py_SET_SIZE(list, n);
2040
234
    for (Py_ssize_t j = 0; j < n; j++) {
2041
208
        PyList_SET_ITEM(list, j, buffer[j]);
2042
208
    }
2043
253
    for (;;) {
2044
253
        PyObject *item = PyIter_Next(it);
2045
253
        if (item == NULL) {
2046
26
            if (PyErr_Occurred()) {
2047
0
                Py_DECREF(list);
2048
0
                Py_DECREF(it);
2049
0
                return NULL;
2050
0
            }
2051
26
            break;
2052
26
        }
2053
227
        if (_PyList_AppendTakeRef(list, item) < 0) {
2054
0
            Py_DECREF(list);
2055
0
            Py_DECREF(it);
2056
0
            return NULL;
2057
0
        }
2058
227
    }
2059
26
    Py_DECREF(it);
2060
26
    PyObject *res = _PyList_AsTupleAndClear(list);
2061
26
    Py_DECREF(list);
2062
26
    return res;
2063
0
fail:
2064
0
    Py_DECREF(it);
2065
0
    while (n > 0) {
2066
0
        n--;
2067
0
        Py_DECREF(buffer[n]);
2068
0
    }
2069
0
    return NULL;
2070
26
}
2071
2072
PyObject *
2073
PySequence_List(PyObject *v)
2074
5.93M
{
2075
5.93M
    PyObject *result;  /* result list */
2076
5.93M
    PyObject *rv;          /* return value from PyList_Extend */
2077
2078
5.93M
    if (v == NULL) {
2079
0
        return null_error();
2080
0
    }
2081
2082
5.93M
    result = PyList_New(0);
2083
5.93M
    if (result == NULL)
2084
0
        return NULL;
2085
2086
5.93M
    rv = _PyList_Extend((PyListObject *)result, v);
2087
5.93M
    if (rv == NULL) {
2088
647
        Py_DECREF(result);
2089
647
        return NULL;
2090
647
    }
2091
5.93M
    Py_DECREF(rv);
2092
5.93M
    return result;
2093
5.93M
}
2094
2095
PyObject *
2096
PySequence_Fast(PyObject *v, const char *m)
2097
49.7M
{
2098
49.7M
    PyObject *it;
2099
2100
49.7M
    if (v == NULL) {
2101
0
        return null_error();
2102
0
    }
2103
2104
49.7M
    if (PyList_CheckExact(v) || PyTuple_CheckExact(v)) {
2105
45.7M
        return Py_NewRef(v);
2106
45.7M
    }
2107
2108
3.99M
    it = PyObject_GetIter(v);
2109
3.99M
    if (it == NULL) {
2110
0
        PyThreadState *tstate = _PyThreadState_GET();
2111
0
        if (_PyErr_ExceptionMatches(tstate, PyExc_TypeError)) {
2112
0
            _PyErr_SetString(tstate, PyExc_TypeError, m);
2113
0
        }
2114
0
        return NULL;
2115
0
    }
2116
2117
3.99M
    v = PySequence_List(it);
2118
3.99M
    Py_DECREF(it);
2119
2120
3.99M
    return v;
2121
3.99M
}
2122
2123
/* Iterate over seq.  Result depends on the operation:
2124
   PY_ITERSEARCH_COUNT:  -1 if error, else # of times obj appears in seq.
2125
   PY_ITERSEARCH_INDEX:  0-based index of first occurrence of obj in seq;
2126
    set ValueError and return -1 if none found; also return -1 on error.
2127
   PY_ITERSEARCH_CONTAINS:  return 1 if obj in seq, else 0; -1 on error.
2128
*/
2129
Py_ssize_t
2130
_PySequence_IterSearch(PyObject *seq, PyObject *obj, int operation)
2131
0
{
2132
0
    Py_ssize_t n;
2133
0
    int wrapped;  /* for PY_ITERSEARCH_INDEX, true iff n wrapped around */
2134
0
    PyObject *it;  /* iter(seq) */
2135
2136
0
    if (seq == NULL || obj == NULL) {
2137
0
        null_error();
2138
0
        return -1;
2139
0
    }
2140
2141
0
    it = PyObject_GetIter(seq);
2142
0
    if (it == NULL) {
2143
0
        if (PyErr_ExceptionMatches(PyExc_TypeError)) {
2144
0
            if (operation == PY_ITERSEARCH_CONTAINS) {
2145
0
                type_error(
2146
0
                    "argument of type '%.200s' is not a container or iterable",
2147
0
                    seq
2148
0
                    );
2149
0
            }
2150
0
            else {
2151
0
                type_error("argument of type '%.200s' is not iterable", seq);
2152
0
            }
2153
0
        }
2154
0
        return -1;
2155
0
    }
2156
2157
0
    n = wrapped = 0;
2158
0
    for (;;) {
2159
0
        int cmp;
2160
0
        PyObject *item = PyIter_Next(it);
2161
0
        if (item == NULL) {
2162
0
            if (PyErr_Occurred())
2163
0
                goto Fail;
2164
0
            break;
2165
0
        }
2166
2167
0
        cmp = PyObject_RichCompareBool(item, obj, Py_EQ);
2168
0
        Py_DECREF(item);
2169
0
        if (cmp < 0)
2170
0
            goto Fail;
2171
0
        if (cmp > 0) {
2172
0
            switch (operation) {
2173
0
            case PY_ITERSEARCH_COUNT:
2174
0
                if (n == PY_SSIZE_T_MAX) {
2175
0
                    PyErr_SetString(PyExc_OverflowError,
2176
0
                           "count exceeds C integer size");
2177
0
                    goto Fail;
2178
0
                }
2179
0
                ++n;
2180
0
                break;
2181
2182
0
            case PY_ITERSEARCH_INDEX:
2183
0
                if (wrapped) {
2184
0
                    PyErr_SetString(PyExc_OverflowError,
2185
0
                           "index exceeds C integer size");
2186
0
                    goto Fail;
2187
0
                }
2188
0
                goto Done;
2189
2190
0
            case PY_ITERSEARCH_CONTAINS:
2191
0
                n = 1;
2192
0
                goto Done;
2193
2194
0
            default:
2195
0
                Py_UNREACHABLE();
2196
0
            }
2197
0
        }
2198
2199
0
        if (operation == PY_ITERSEARCH_INDEX) {
2200
0
            if (n == PY_SSIZE_T_MAX)
2201
0
                wrapped = 1;
2202
0
            ++n;
2203
0
        }
2204
0
    }
2205
2206
0
    if (operation != PY_ITERSEARCH_INDEX)
2207
0
        goto Done;
2208
2209
0
    PyErr_SetString(PyExc_ValueError,
2210
0
                    "sequence.index(x): x not in sequence");
2211
    /* fall into failure code */
2212
0
Fail:
2213
0
    n = -1;
2214
    /* fall through */
2215
0
Done:
2216
0
    Py_DECREF(it);
2217
0
    return n;
2218
2219
0
}
2220
2221
/* Return # of times o appears in s. */
2222
Py_ssize_t
2223
PySequence_Count(PyObject *s, PyObject *o)
2224
0
{
2225
0
    return _PySequence_IterSearch(s, o, PY_ITERSEARCH_COUNT);
2226
0
}
2227
2228
/* Return -1 if error; 1 if ob in seq; 0 if ob not in seq.
2229
 * Use sq_contains if possible, else defer to _PySequence_IterSearch().
2230
 */
2231
int
2232
PySequence_Contains(PyObject *seq, PyObject *ob)
2233
92.7M
{
2234
92.7M
    PySequenceMethods *sqm = Py_TYPE(seq)->tp_as_sequence;
2235
92.7M
    if (sqm != NULL && sqm->sq_contains != NULL) {
2236
92.7M
        int res = (*sqm->sq_contains)(seq, ob);
2237
92.7M
        assert(_Py_CheckSlotResult(seq, "__contains__", res >= 0));
2238
92.7M
        return res;
2239
92.7M
    }
2240
0
    Py_ssize_t result = _PySequence_IterSearch(seq, ob, PY_ITERSEARCH_CONTAINS);
2241
0
    return Py_SAFE_DOWNCAST(result, Py_ssize_t, int);
2242
92.7M
}
2243
2244
/* Backwards compatibility */
2245
#undef PySequence_In
2246
int
2247
PySequence_In(PyObject *w, PyObject *v)
2248
0
{
2249
0
    return PySequence_Contains(w, v);
2250
0
}
2251
2252
Py_ssize_t
2253
PySequence_Index(PyObject *s, PyObject *o)
2254
0
{
2255
0
    return _PySequence_IterSearch(s, o, PY_ITERSEARCH_INDEX);
2256
0
}
2257
2258
/* Operations on mappings */
2259
2260
int
2261
PyMapping_Check(PyObject *o)
2262
21.0M
{
2263
21.0M
    return o && Py_TYPE(o)->tp_as_mapping &&
2264
14.1M
        Py_TYPE(o)->tp_as_mapping->mp_subscript;
2265
21.0M
}
2266
2267
Py_ssize_t
2268
PyMapping_Size(PyObject *o)
2269
532
{
2270
532
    if (o == NULL) {
2271
0
        null_error();
2272
0
        return -1;
2273
0
    }
2274
2275
532
    PyMappingMethods *m = Py_TYPE(o)->tp_as_mapping;
2276
532
    if (m && m->mp_length) {
2277
532
        Py_ssize_t len = m->mp_length(o);
2278
532
        assert(_Py_CheckSlotResult(o, "__len__", len >= 0));
2279
532
        return len;
2280
532
    }
2281
2282
0
    if (Py_TYPE(o)->tp_as_sequence && Py_TYPE(o)->tp_as_sequence->sq_length) {
2283
0
        type_error("%.200s is not a mapping", o);
2284
0
        return -1;
2285
0
    }
2286
    /* PyMapping_Size() can be called from PyObject_Size(). */
2287
0
    type_error("object of type '%.200s' has no len()", o);
2288
0
    return -1;
2289
0
}
2290
2291
#undef PyMapping_Length
2292
Py_ssize_t
2293
PyMapping_Length(PyObject *o)
2294
0
{
2295
0
    return PyMapping_Size(o);
2296
0
}
2297
#define PyMapping_Length PyMapping_Size
2298
2299
PyObject *
2300
PyMapping_GetItemString(PyObject *o, const char *key)
2301
110
{
2302
110
    PyObject *okey, *r;
2303
2304
110
    if (key == NULL) {
2305
0
        return null_error();
2306
0
    }
2307
2308
110
    okey = PyUnicode_FromString(key);
2309
110
    if (okey == NULL)
2310
0
        return NULL;
2311
110
    r = PyObject_GetItem(o, okey);
2312
110
    Py_DECREF(okey);
2313
110
    return r;
2314
110
}
2315
2316
int
2317
PyMapping_GetOptionalItemString(PyObject *obj, const char *key, PyObject **result)
2318
0
{
2319
0
    if (key == NULL) {
2320
0
        *result = NULL;
2321
0
        null_error();
2322
0
        return -1;
2323
0
    }
2324
0
    PyObject *okey = PyUnicode_FromString(key);
2325
0
    if (okey == NULL) {
2326
0
        *result = NULL;
2327
0
        return -1;
2328
0
    }
2329
0
    int rc = PyMapping_GetOptionalItem(obj, okey, result);
2330
0
    Py_DECREF(okey);
2331
0
    return rc;
2332
0
}
2333
2334
int
2335
PyMapping_SetItemString(PyObject *o, const char *key, PyObject *value)
2336
30
{
2337
30
    PyObject *okey;
2338
30
    int r;
2339
2340
30
    if (key == NULL) {
2341
0
        null_error();
2342
0
        return -1;
2343
0
    }
2344
2345
30
    okey = PyUnicode_FromString(key);
2346
30
    if (okey == NULL)
2347
0
        return -1;
2348
30
    r = PyObject_SetItem(o, okey, value);
2349
30
    Py_DECREF(okey);
2350
30
    return r;
2351
30
}
2352
2353
int
2354
PyMapping_HasKeyStringWithError(PyObject *obj, const char *key)
2355
0
{
2356
0
    PyObject *res;
2357
0
    int rc = PyMapping_GetOptionalItemString(obj, key, &res);
2358
0
    Py_XDECREF(res);
2359
0
    return rc;
2360
0
}
2361
2362
int
2363
PyMapping_HasKeyWithError(PyObject *obj, PyObject *key)
2364
0
{
2365
0
    PyObject *res;
2366
0
    int rc = PyMapping_GetOptionalItem(obj, key, &res);
2367
0
    Py_XDECREF(res);
2368
0
    return rc;
2369
0
}
2370
2371
int
2372
PyMapping_HasKeyString(PyObject *obj, const char *key)
2373
0
{
2374
0
    PyObject *value;
2375
0
    int rc;
2376
0
    if (obj == NULL) {
2377
        // For backward compatibility.
2378
        // PyMapping_GetOptionalItemString() crashes if obj is NULL.
2379
0
        null_error();
2380
0
        rc = -1;
2381
0
    }
2382
0
    else {
2383
0
        rc = PyMapping_GetOptionalItemString(obj, key, &value);
2384
0
    }
2385
0
    if (rc < 0) {
2386
0
        PyErr_FormatUnraisable(
2387
0
            "Exception ignored in PyMapping_HasKeyString(); consider using "
2388
0
            "PyMapping_HasKeyStringWithError(), "
2389
0
            "PyMapping_GetOptionalItemString() or PyMapping_GetItemString()");
2390
0
        return 0;
2391
0
    }
2392
0
    Py_XDECREF(value);
2393
0
    return rc;
2394
0
}
2395
2396
int
2397
PyMapping_HasKey(PyObject *obj, PyObject *key)
2398
0
{
2399
0
    PyObject *value;
2400
0
    int rc;
2401
0
    if (obj == NULL || key == NULL) {
2402
        // For backward compatibility.
2403
        // PyMapping_GetOptionalItem() crashes if any of them is NULL.
2404
0
        null_error();
2405
0
        rc = -1;
2406
0
    }
2407
0
    else {
2408
0
        rc = PyMapping_GetOptionalItem(obj, key, &value);
2409
0
    }
2410
0
    if (rc < 0) {
2411
0
        PyErr_FormatUnraisable(
2412
0
            "Exception ignored in PyMapping_HasKey(); consider using "
2413
0
            "PyMapping_HasKeyWithError(), "
2414
0
            "PyMapping_GetOptionalItem() or PyObject_GetItem()");
2415
0
        return 0;
2416
0
    }
2417
0
    Py_XDECREF(value);
2418
0
    return rc;
2419
0
}
2420
2421
/* This function is quite similar to PySequence_Fast(), but specialized to be
2422
   a helper for PyMapping_Keys(), PyMapping_Items() and PyMapping_Values().
2423
 */
2424
static PyObject *
2425
method_output_as_list(PyObject *o, PyObject *meth)
2426
1.20k
{
2427
1.20k
    PyObject *it, *result, *meth_output;
2428
2429
1.20k
    assert(o != NULL);
2430
1.20k
    meth_output = PyObject_CallMethodNoArgs(o, meth);
2431
1.20k
    if (meth_output == NULL || PyList_CheckExact(meth_output)) {
2432
0
        return meth_output;
2433
0
    }
2434
1.20k
    it = PyObject_GetIter(meth_output);
2435
1.20k
    if (it == NULL) {
2436
0
        PyThreadState *tstate = _PyThreadState_GET();
2437
0
        if (_PyErr_ExceptionMatches(tstate, PyExc_TypeError)) {
2438
0
            _PyErr_Format(tstate, PyExc_TypeError,
2439
0
                          "%T.%U() must return an iterable, not %T",
2440
0
                          o, meth, meth_output);
2441
0
        }
2442
0
        Py_DECREF(meth_output);
2443
0
        return NULL;
2444
0
    }
2445
1.20k
    Py_DECREF(meth_output);
2446
1.20k
    result = PySequence_List(it);
2447
1.20k
    Py_DECREF(it);
2448
1.20k
    return result;
2449
1.20k
}
2450
2451
PyObject *
2452
PyMapping_Keys(PyObject *o)
2453
374
{
2454
374
    if (o == NULL) {
2455
0
        return null_error();
2456
0
    }
2457
374
    if (PyDict_CheckExact(o)) {
2458
174
        return PyDict_Keys(o);
2459
174
    }
2460
200
    return method_output_as_list(o, &_Py_ID(keys));
2461
374
}
2462
2463
PyObject *
2464
PyMapping_Items(PyObject *o)
2465
1.00k
{
2466
1.00k
    if (o == NULL) {
2467
0
        return null_error();
2468
0
    }
2469
1.00k
    if (PyDict_CheckExact(o)) {
2470
0
        return PyDict_Items(o);
2471
0
    }
2472
1.00k
    return method_output_as_list(o, &_Py_ID(items));
2473
1.00k
}
2474
2475
PyObject *
2476
PyMapping_Values(PyObject *o)
2477
0
{
2478
0
    if (o == NULL) {
2479
0
        return null_error();
2480
0
    }
2481
0
    if (PyDict_CheckExact(o)) {
2482
0
        return PyDict_Values(o);
2483
0
    }
2484
0
    return method_output_as_list(o, &_Py_ID(values));
2485
0
}
2486
2487
/* isinstance(), issubclass() */
2488
2489
/* abstract_get_bases() has logically 4 return states:
2490
 *
2491
 * 1. getattr(cls, '__bases__') could raise an AttributeError
2492
 * 2. getattr(cls, '__bases__') could raise some other exception
2493
 * 3. getattr(cls, '__bases__') could return a tuple
2494
 * 4. getattr(cls, '__bases__') could return something other than a tuple
2495
 *
2496
 * Only state #3 is a non-error state and only it returns a non-NULL object
2497
 * (it returns the retrieved tuple).
2498
 *
2499
 * Any raised AttributeErrors are masked by clearing the exception and
2500
 * returning NULL.  If an object other than a tuple comes out of __bases__,
2501
 * then again, the return value is NULL.  So yes, these two situations
2502
 * produce exactly the same results: NULL is returned and no error is set.
2503
 *
2504
 * If some exception other than AttributeError is raised, then NULL is also
2505
 * returned, but the exception is not cleared.  That's because we want the
2506
 * exception to be propagated along.
2507
 *
2508
 * Callers are expected to test for PyErr_Occurred() when the return value
2509
 * is NULL to decide whether a valid exception should be propagated or not.
2510
 * When there's no exception to propagate, it's customary for the caller to
2511
 * set a TypeError.
2512
 */
2513
static PyObject *
2514
abstract_get_bases(PyObject *cls)
2515
0
{
2516
0
    PyObject *bases;
2517
2518
0
    (void)PyObject_GetOptionalAttr(cls, &_Py_ID(__bases__), &bases);
2519
0
    if (bases != NULL && !PyTuple_Check(bases)) {
2520
0
        Py_DECREF(bases);
2521
0
        return NULL;
2522
0
    }
2523
0
    return bases;
2524
0
}
2525
2526
2527
static int
2528
abstract_issubclass(PyObject *derived, PyObject *cls)
2529
0
{
2530
0
    PyObject *bases = NULL;
2531
0
    Py_ssize_t i, n;
2532
0
    int r = 0;
2533
2534
0
    while (1) {
2535
0
        if (derived == cls) {
2536
0
            Py_XDECREF(bases); /* See below comment */
2537
0
            return 1;
2538
0
        }
2539
        /* Use XSETREF to drop bases reference *after* finishing with
2540
           derived; bases might be the only reference to it.
2541
           XSETREF is used instead of SETREF, because bases is NULL on the
2542
           first iteration of the loop.
2543
        */
2544
0
        Py_XSETREF(bases, abstract_get_bases(derived));
2545
0
        if (bases == NULL) {
2546
0
            if (PyErr_Occurred())
2547
0
                return -1;
2548
0
            return 0;
2549
0
        }
2550
0
        n = PyTuple_GET_SIZE(bases);
2551
0
        if (n == 0) {
2552
0
            Py_DECREF(bases);
2553
0
            return 0;
2554
0
        }
2555
        /* Avoid recursivity in the single inheritance case */
2556
0
        if (n == 1) {
2557
0
            derived = PyTuple_GET_ITEM(bases, 0);
2558
0
            continue;
2559
0
        }
2560
0
        break;
2561
0
    }
2562
0
    assert(n >= 2);
2563
0
    if (_Py_EnterRecursiveCall(" in __issubclass__")) {
2564
0
        Py_DECREF(bases);
2565
0
        return -1;
2566
0
    }
2567
0
    for (i = 0; i < n; i++) {
2568
0
        r = abstract_issubclass(PyTuple_GET_ITEM(bases, i), cls);
2569
0
        if (r != 0) {
2570
0
            break;
2571
0
        }
2572
0
    }
2573
0
    _Py_LeaveRecursiveCall();
2574
0
    Py_DECREF(bases);
2575
0
    return r;
2576
0
}
2577
2578
static int
2579
check_class(PyObject *cls, const char *error)
2580
0
{
2581
0
    PyObject *bases = abstract_get_bases(cls);
2582
0
    if (bases == NULL) {
2583
        /* Do not mask errors. */
2584
0
        PyThreadState *tstate = _PyThreadState_GET();
2585
0
        if (!_PyErr_Occurred(tstate)) {
2586
0
            _PyErr_SetString(tstate, PyExc_TypeError, error);
2587
0
        }
2588
0
        return 0;
2589
0
    }
2590
0
    Py_DECREF(bases);
2591
0
    return -1;
2592
0
}
2593
2594
static int
2595
object_isinstance(PyObject *inst, PyObject *cls)
2596
1.50M
{
2597
1.50M
    PyObject *icls;
2598
1.50M
    int retval;
2599
1.50M
    if (PyType_Check(cls)) {
2600
1.50M
        retval = PyObject_TypeCheck(inst, (PyTypeObject *)cls);
2601
1.50M
        if (retval == 0) {
2602
1.43M
            retval = PyObject_GetOptionalAttr(inst, &_Py_ID(__class__), &icls);
2603
1.43M
            if (icls != NULL) {
2604
1.43M
                if (icls != (PyObject *)(Py_TYPE(inst)) && PyType_Check(icls)) {
2605
0
                    retval = PyType_IsSubtype(
2606
0
                        (PyTypeObject *)icls,
2607
0
                        (PyTypeObject *)cls);
2608
0
                }
2609
1.43M
                else {
2610
1.43M
                    retval = 0;
2611
1.43M
                }
2612
1.43M
                Py_DECREF(icls);
2613
1.43M
            }
2614
1.43M
        }
2615
1.50M
    }
2616
0
    else {
2617
0
        if (!check_class(cls,
2618
0
            "isinstance() arg 2 must be a type, a tuple of types, or a union"))
2619
0
            return -1;
2620
0
        retval = PyObject_GetOptionalAttr(inst, &_Py_ID(__class__), &icls);
2621
0
        if (icls != NULL) {
2622
0
            retval = abstract_issubclass(icls, cls);
2623
0
            Py_DECREF(icls);
2624
0
        }
2625
0
    }
2626
2627
1.50M
    return retval;
2628
1.50M
}
2629
2630
static int
2631
object_recursive_isinstance(PyThreadState *tstate, PyObject *inst, PyObject *cls)
2632
18.5M
{
2633
    /* Quick test for an exact match */
2634
18.5M
    if (Py_IS_TYPE(inst, (PyTypeObject *)cls)) {
2635
16.9M
        return 1;
2636
16.9M
    }
2637
2638
    /* We know what type's __instancecheck__ does. */
2639
1.63M
    if (PyType_CheckExact(cls)) {
2640
1.49M
        return object_isinstance(inst, cls);
2641
1.49M
    }
2642
2643
131k
    if (_PyUnion_Check(cls)) {
2644
0
        cls = _Py_union_args(cls);
2645
0
    }
2646
2647
131k
    if (PyTuple_Check(cls)) {
2648
        /* Not a general sequence -- that opens up the road to
2649
           recursion and stack overflow. */
2650
122k
        if (_Py_EnterRecursiveCallTstate(tstate, " in __instancecheck__")) {
2651
0
            return -1;
2652
0
        }
2653
122k
        Py_ssize_t n = PyTuple_GET_SIZE(cls);
2654
122k
        int r = 0;
2655
210k
        for (Py_ssize_t i = 0; i < n; ++i) {
2656
180k
            PyObject *item = PyTuple_GET_ITEM(cls, i);
2657
180k
            r = object_recursive_isinstance(tstate, inst, item);
2658
180k
            if (r != 0) {
2659
                /* either found it, or got an error */
2660
91.9k
                break;
2661
91.9k
            }
2662
180k
        }
2663
122k
        _Py_LeaveRecursiveCallTstate(tstate);
2664
122k
        return r;
2665
122k
    }
2666
2667
8.96k
    PyObject *checker = _PyObject_LookupSpecial(cls, &_Py_ID(__instancecheck__));
2668
8.96k
    if (checker != NULL) {
2669
8.96k
        if (_Py_EnterRecursiveCallTstate(tstate, " in __instancecheck__")) {
2670
0
            Py_DECREF(checker);
2671
0
            return -1;
2672
0
        }
2673
2674
8.96k
        PyObject *res = PyObject_CallOneArg(checker, inst);
2675
8.96k
        _Py_LeaveRecursiveCallTstate(tstate);
2676
8.96k
        Py_DECREF(checker);
2677
2678
8.96k
        if (res == NULL) {
2679
0
            return -1;
2680
0
        }
2681
8.96k
        int ok = PyObject_IsTrue(res);
2682
8.96k
        Py_DECREF(res);
2683
2684
8.96k
        return ok;
2685
8.96k
    }
2686
0
    else if (_PyErr_Occurred(tstate)) {
2687
0
        return -1;
2688
0
    }
2689
2690
    /* cls has no __instancecheck__() method */
2691
0
    return object_isinstance(inst, cls);
2692
8.96k
}
2693
2694
2695
int
2696
PyObject_IsInstance(PyObject *inst, PyObject *cls)
2697
18.3M
{
2698
18.3M
    PyThreadState *tstate = _PyThreadState_GET();
2699
18.3M
    return object_recursive_isinstance(tstate, inst, cls);
2700
18.3M
}
2701
2702
2703
static  int
2704
recursive_issubclass(PyObject *derived, PyObject *cls)
2705
14.3M
{
2706
14.3M
    if (PyType_Check(cls) && PyType_Check(derived)) {
2707
        /* Fast path (non-recursive) */
2708
14.3M
        return PyType_IsSubtype((PyTypeObject *)derived, (PyTypeObject *)cls);
2709
14.3M
    }
2710
0
    if (!check_class(derived,
2711
0
                     "issubclass() arg 1 must be a class"))
2712
0
        return -1;
2713
2714
0
    if (!_PyUnion_Check(cls) && !check_class(cls,
2715
0
                            "issubclass() arg 2 must be a class,"
2716
0
                            " a tuple of classes, or a union")) {
2717
0
        return -1;
2718
0
    }
2719
2720
0
    return abstract_issubclass(derived, cls);
2721
0
}
2722
2723
static int
2724
object_issubclass(PyThreadState *tstate, PyObject *derived, PyObject *cls)
2725
20.1M
{
2726
20.1M
    PyObject *checker;
2727
2728
    /* We know what type's __subclasscheck__ does. */
2729
20.1M
    if (PyType_CheckExact(cls)) {
2730
        /* Quick test for an exact match */
2731
20.1M
        if (derived == cls)
2732
20.0M
            return 1;
2733
15.4k
        return recursive_issubclass(derived, cls);
2734
20.1M
    }
2735
2736
3.10k
    if (_PyUnion_Check(cls)) {
2737
0
        cls = _Py_union_args(cls);
2738
0
    }
2739
2740
3.10k
    if (PyTuple_Check(cls)) {
2741
2742
0
        if (_Py_EnterRecursiveCallTstate(tstate, " in __subclasscheck__")) {
2743
0
            return -1;
2744
0
        }
2745
0
        Py_ssize_t n = PyTuple_GET_SIZE(cls);
2746
0
        int r = 0;
2747
0
        for (Py_ssize_t i = 0; i < n; ++i) {
2748
0
            PyObject *item = PyTuple_GET_ITEM(cls, i);
2749
0
            r = object_issubclass(tstate, derived, item);
2750
0
            if (r != 0)
2751
                /* either found it, or got an error */
2752
0
                break;
2753
0
        }
2754
0
        _Py_LeaveRecursiveCallTstate(tstate);
2755
0
        return r;
2756
0
    }
2757
2758
3.10k
    checker = _PyObject_LookupSpecial(cls, &_Py_ID(__subclasscheck__));
2759
3.10k
    if (checker != NULL) {
2760
3.10k
        int ok = -1;
2761
3.10k
        if (_Py_EnterRecursiveCallTstate(tstate, " in __subclasscheck__")) {
2762
0
            Py_DECREF(checker);
2763
0
            return ok;
2764
0
        }
2765
3.10k
        PyObject *res = PyObject_CallOneArg(checker, derived);
2766
3.10k
        _Py_LeaveRecursiveCallTstate(tstate);
2767
3.10k
        Py_DECREF(checker);
2768
3.10k
        if (res != NULL) {
2769
3.10k
            ok = PyObject_IsTrue(res);
2770
3.10k
            Py_DECREF(res);
2771
3.10k
        }
2772
3.10k
        return ok;
2773
3.10k
    }
2774
0
    else if (_PyErr_Occurred(tstate)) {
2775
0
        return -1;
2776
0
    }
2777
2778
    /* Can be reached when infinite recursion happens. */
2779
0
    return recursive_issubclass(derived, cls);
2780
3.10k
}
2781
2782
2783
int
2784
PyObject_IsSubclass(PyObject *derived, PyObject *cls)
2785
20.1M
{
2786
20.1M
    PyThreadState *tstate = _PyThreadState_GET();
2787
20.1M
    return object_issubclass(tstate, derived, cls);
2788
20.1M
}
2789
2790
2791
int
2792
_PyObject_RealIsInstance(PyObject *inst, PyObject *cls)
2793
8.96k
{
2794
8.96k
    return object_isinstance(inst, cls);
2795
8.96k
}
2796
2797
int
2798
_PyObject_RealIsSubclass(PyObject *derived, PyObject *cls)
2799
14.3M
{
2800
14.3M
    return recursive_issubclass(derived, cls);
2801
14.3M
}
2802
2803
2804
PyObject *
2805
PyObject_GetIter(PyObject *o)
2806
142M
{
2807
142M
    PyTypeObject *t = Py_TYPE(o);
2808
142M
    getiterfunc f;
2809
2810
142M
    f = t->tp_iter;
2811
142M
    if (f == NULL) {
2812
746
        if (PySequence_Check(o))
2813
746
            return PySeqIter_New(o);
2814
0
        return type_error("'%.200s' object is not iterable", o);
2815
746
    }
2816
142M
    else {
2817
142M
        PyObject *res = (*f)(o);
2818
142M
        if (res != NULL && !PyIter_Check(res)) {
2819
0
            PyErr_Format(PyExc_TypeError,
2820
0
                         "%T.__iter__() must return an iterator, not %T",
2821
0
                         o, res);
2822
0
            Py_SETREF(res, NULL);
2823
0
        }
2824
142M
        return res;
2825
142M
    }
2826
142M
}
2827
2828
PyObject *
2829
0
PyObject_GetAIter(PyObject *o) {
2830
0
    PyTypeObject *t = Py_TYPE(o);
2831
0
    unaryfunc f;
2832
2833
0
    if (t->tp_as_async == NULL || t->tp_as_async->am_aiter == NULL) {
2834
0
        return type_error("'%.200s' object is not an async iterable", o);
2835
0
    }
2836
0
    f = t->tp_as_async->am_aiter;
2837
0
    PyObject *it = (*f)(o);
2838
0
    if (it != NULL && !PyAIter_Check(it)) {
2839
0
        PyErr_Format(PyExc_TypeError,
2840
0
                     "%T.__aiter__() must return an async iterator, not %T",
2841
0
                     o, it);
2842
0
        Py_SETREF(it, NULL);
2843
0
    }
2844
0
    return it;
2845
0
}
2846
2847
int
2848
PyIter_Check(PyObject *obj)
2849
158M
{
2850
158M
    PyTypeObject *tp = Py_TYPE(obj);
2851
158M
    return (tp->tp_iternext != NULL &&
2852
158M
            tp->tp_iternext != &_PyObject_NextNotImplemented);
2853
158M
}
2854
2855
int
2856
PyAIter_Check(PyObject *obj)
2857
0
{
2858
0
    PyTypeObject *tp = Py_TYPE(obj);
2859
0
    return (tp->tp_as_async != NULL &&
2860
0
            tp->tp_as_async->am_anext != NULL &&
2861
0
            tp->tp_as_async->am_anext != &_PyObject_NextNotImplemented);
2862
0
}
2863
2864
static int
2865
iternext(PyObject *iter, PyObject **item)
2866
83.5M
{
2867
83.5M
    iternextfunc tp_iternext = Py_TYPE(iter)->tp_iternext;
2868
83.5M
    if ((*item = tp_iternext(iter))) {
2869
63.4M
        return 1;
2870
63.4M
    }
2871
2872
20.0M
    PyThreadState *tstate = _PyThreadState_GET();
2873
    /* When the iterator is exhausted it must return NULL;
2874
     * a StopIteration exception may or may not be set. */
2875
20.0M
    if (!_PyErr_Occurred(tstate)) {
2876
20.0M
        return 0;
2877
20.0M
    }
2878
21.7k
    if (_PyErr_ExceptionMatches(tstate, PyExc_StopIteration)) {
2879
0
        _PyErr_Clear(tstate);
2880
0
        return 0;
2881
0
    }
2882
2883
    /* Error case: an exception (different than StopIteration) is set. */
2884
21.7k
    return -1;
2885
21.7k
}
2886
2887
/* Return 1 and set 'item' to the next item of 'iter' on success.
2888
 * Return 0 and set 'item' to NULL when there are no remaining values.
2889
 * Return -1, set 'item' to NULL and set an exception on error.
2890
 */
2891
int
2892
PyIter_NextItem(PyObject *iter, PyObject **item)
2893
0
{
2894
0
    assert(iter != NULL);
2895
0
    assert(item != NULL);
2896
2897
0
    if (Py_TYPE(iter)->tp_iternext == NULL) {
2898
0
        *item = NULL;
2899
0
        PyErr_Format(PyExc_TypeError, "expected an iterator, got '%T'", iter);
2900
0
        return -1;
2901
0
    }
2902
2903
0
    return iternext(iter, item);
2904
0
}
2905
2906
/* Return next item.
2907
 *
2908
 * If an error occurs, return NULL.  PyErr_Occurred() will be true.
2909
 * If the iteration terminates normally, return NULL and clear the
2910
 * PyExc_StopIteration exception (if it was set).  PyErr_Occurred()
2911
 * will be false.
2912
 * Else return the next object.  PyErr_Occurred() will be false.
2913
 */
2914
PyObject *
2915
PyIter_Next(PyObject *iter)
2916
83.5M
{
2917
83.5M
    PyObject *item;
2918
83.5M
    (void)iternext(iter, &item);
2919
83.5M
    return item;
2920
83.5M
}
2921
2922
PySendResult
2923
PyIter_Send(PyObject *iter, PyObject *arg, PyObject **result)
2924
0
{
2925
0
    assert(arg != NULL);
2926
0
    assert(result != NULL);
2927
0
    if (Py_TYPE(iter)->tp_as_async && Py_TYPE(iter)->tp_as_async->am_send) {
2928
0
        PySendResult res = Py_TYPE(iter)->tp_as_async->am_send(iter, arg, result);
2929
0
        assert(_Py_CheckSlotResult(iter, "am_send", res != PYGEN_ERROR));
2930
0
        return res;
2931
0
    }
2932
0
    if (arg == Py_None && PyIter_Check(iter)) {
2933
0
        *result = Py_TYPE(iter)->tp_iternext(iter);
2934
0
    }
2935
0
    else {
2936
0
        *result = PyObject_CallMethodOneArg(iter, &_Py_ID(send), arg);
2937
0
    }
2938
0
    if (*result != NULL) {
2939
0
        return PYGEN_NEXT;
2940
0
    }
2941
0
    if (_PyGen_FetchStopIterationValue(result) == 0) {
2942
0
        return PYGEN_RETURN;
2943
0
    }
2944
0
    return PYGEN_ERROR;
2945
0
}